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DK1765292T3 - ABUSE PREVENTIONAL PHARMACEUTICAL FORMULATIONS - Google Patents

ABUSE PREVENTIONAL PHARMACEUTICAL FORMULATIONS Download PDF

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Publication number
DK1765292T3
DK1765292T3 DK05759527.4T DK05759527T DK1765292T3 DK 1765292 T3 DK1765292 T3 DK 1765292T3 DK 05759527 T DK05759527 T DK 05759527T DK 1765292 T3 DK1765292 T3 DK 1765292T3
Authority
DK
Denmark
Prior art keywords
acid
composition
drug
oxycodone
wax
Prior art date
Application number
DK05759527.4T
Other languages
Danish (da)
Inventor
Jane Hirsh
Alison B Fleming
Roman V Rariy
Alexander M Klibanov
Original Assignee
Collegium Pharmaceutical Inc
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Family has litigation
First worldwide family litigation filed litigation Critical https://patents.darts-ip.com/?family=34972336&utm_source=google_patent&utm_medium=platform_link&utm_campaign=public_patent_search&patent=DK1765292(T3) "Global patent litigation dataset” by Darts-ip is licensed under a Creative Commons Attribution 4.0 International License.
Application filed by Collegium Pharmaceutical Inc filed Critical Collegium Pharmaceutical Inc
Application granted granted Critical
Publication of DK1765292T3 publication Critical patent/DK1765292T3/en

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    • AHUMAN NECESSITIES
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    • A61KPREPARATIONS FOR MEDICAL, DENTAL OR TOILETRY PURPOSES
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    • A61K31/33Heterocyclic compounds
    • A61K31/395Heterocyclic compounds having nitrogen as a ring hetero atom, e.g. guanethidine or rifamycins
    • A61K31/435Heterocyclic compounds having nitrogen as a ring hetero atom, e.g. guanethidine or rifamycins having six-membered rings with one nitrogen as the only ring hetero atom
    • A61K31/47Quinolines; Isoquinolines
    • A61K31/485Morphinan derivatives, e.g. morphine, codeine
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    • H04N21/4104Peripherals receiving signals from specially adapted client devices
    • H04N21/4126The peripheral being portable, e.g. PDAs or mobile phones
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    • A61K31/19Carboxylic acids, e.g. valproic acid
    • A61K31/20Carboxylic acids, e.g. valproic acid having a carboxyl group bound to a chain of seven or more carbon atoms, e.g. stearic, palmitic, arachidic acids
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Abstract

An abuse-deterrent pharmaceutical composition has been developed to reduce the likelihood of improper administration of drugs, especially drugs such as opioids. In a preferred embodiment, a drug is modified to increase its lipophilicity. In some embodiments the modified drug is homogeneously dispersed within spherical microparticles composed of a material that is either slowly soluble or not soluble in water. In some embodiments the drug containing microparticles or drug particles are coated with one or more coating layers, where at least one coating is water insoluble and/or organic solvent insoluble. The abuse-deterrent composition retards the release of drug, even if the physical integrity of the formulation is compromised (for example, by chopping with a blade or crushing) and the resulting material is placed in water, snorted, or swallowed. However, when administered as directed, the drug is slowly released from the composition as the composition is passes through the GI tract.

Description

DESCRIPTION
FIELD OF THE INVENTION
[0001] The present invention is generally in the field of pharmaceutical compositions, specifically compositions designed to reduce the potential for improper administration of drugs that are subject to abuse.
BACKGROUND OF THE INVENTION
[0002] Oxycodone, morphine, and other opioid analgesics are therapeutically useful and effective medications, e.g., as pain killers, when administered orally. Unfortunately, they also pose a severe threat for willful abuse due to their ability to alter mood and/or cause a sense of euphoria. Currently available sustained release formulations of such drugs, which contain a relatively large amount of drug intended to be released from the formulation over an extended period of time, are particularly attractive to abusers since the sustained release coating can be destroyed by crushing or grinding the formulation. The crushed material no longer controls the release of drug. Depending on the drug, abusers can then (1) snort the material, (2) swallow the material or (3) dissolve the material in water and subsequently inject it intravenously. The dose of drug contained in the formulation is thus absorbed immediately through the nasal or Gl mucosa (for snorting or swallowing, respectively) or is administered systemically in a bolus via the circulatory system (for IV injection). These abuse methods result in the rapid bioavailability of relatively high doses of drug, giving the abuser a "high". Since relatively simple methods (crushing, grinding, chewing and/or dissolution in water) can be used to transform such formulations into an abusable form, they provide virtually no deterrent to a potential abuser.
[0003] For example, the FDA recently strengthened the warnings and precautions sections in the labeling of OxyContin.RTM. (oxycodone HCI controlled-release) tablets, a narcotic drug approved for the treatment of moderate to severe pain, because of continuing reports of abuse and diversion. OxyContin.RTM. contains oxycodone HCI (available in 10, 20, 40 and 80 mg strengths), an opioid agonist with an addiction potential similar to that of morphine. Opioid agonists are substances that act by attaching to specific proteins called opioid receptors, which are found in the brain, spinal cord, and gastrointestinal tract. When these drugs attach to certain opioid receptors in the brain and spinal cord they can effectively block the transmission of pain messages to the brain. OxyContin.R™ is supplied in a controlled-release dosage form and is intended to provide up to 12 hours of relief from moderate to severe pain. The warning specifically states that the tablet must be taken whole and only by mouth. When the tablet is chewed or crushed and its contents are swallowed, snorted into the nostrils or dissolved and subsequently injected intravenously, the controlled release mechanism is destroyed and a potentially lethal dose of oxycodone becomes bioavailable.
[0004] In recent years, there have been numerous reports of Oxycodone diversion and abuse in several states. For example, DEA's Office of Diversion Control reported 700 OxyContin.R™. thefts in the U.S. between January 2000 and June 2001. Some of these reported cases have been associated with serious consequences including death.
[0005] Oxycodone is a controlled substance in Schedule II of the Controlled Substances Act (CSA), which is administered by the Drug Enforcement Administration (DEA). Despite the fact that Schedule II provides the maximum amount of control possible under the CSA for approved drug products, in practice, it is difficult for law enforcement agencies to control the diversion or misuse of legitimate prescriptions. Although abuse, misuse, and diversion are potential problems for all opioids, including Oxycodone, opioids are a very important part of the medical arsenal for the management of pain when used appropriately under the careful supervision of a physician.
[0006] Currently available formulations for such drugs are designed for oral administration but do not include mechanisms to prevent or retard improper methods of administration such as chewing, injection and snorting. This represents a serious problem given the large number of legitimate prescriptions written in the U.S.; for example, the medical use of opioids within the U.S. increased 400% from 1996 to 2000. The problems with abuse are significant and longstanding, and efforts to design new abuse-resistant or abuse-deterrent formulations have been largely unsuccessful. U.S. Patent Nos. 3,980,766, 4,070,494 and 6,309,668 describe formulations designed to prevent the injection of compositions meant for oral administration. U.S. Patent No. 3,980,766 describes the incorporation of an ingestible solid which causes a rapid increase in viscosity upon concentration of an aqueous solution thereof. U.S. Patent No. 4,070,494 describes the incorporation of a non-toxic, water gelable material in an amount sufficient to render the drug resistant to aqueous extraction. U.S. Patent No. 6,309,668 describes a tablet for oral administration containing two or more layers comprising one or more drugs and one or more gelling agents within separate layers of the tablet. The resulting tablet forms a gel when combined with the volume of water necessary to dissolve the drug; this formulation thus reduces the extractability of the drug from the tablet. It should be noted that although these compositions preclude abuse by injection, this approach fails to prevent abuse by crushing and swallowing or snorting the formulation, which are commonly reported methods of abuse associated with OxyContin.RTM..
[0007] U.S. Patent Nos. 3,773,955 and 3,966,940 describe formulations containing a combination of opioid agonists and antagonists, in which the antagonist does not block the therapeutic effect when the admixture is administered orally, but which does not produce analgesia, euphoria or physical dependence when administered parenterally by an abuser. U.S. Patent No. 4,457,933 describes a method for decreasing both the oral and parenteral abuse potential of strong analgesic agents by combining an analgesic dose of the analgesic agent with an antagonist in specific, relatively narrow ratios. U.S. Patent Nos. 6,277,384, 6,375,957 and 6,475,494 describe oral dosage forms including a combination of an orally active opioid agonist and an orally active opioid antagonist in a ratio that, when delivered orally, is analgesically effective but that is aversive in a physically dependent subject. While such a formulation may be successful in deterring abuse, it also has the potential to produce adverse effects in legitimate patients.
[0008] WO 2004/004693 was published on 15 January 2004, and discloses an abuse-deterrent pharmaceutical composition, developed to reduce the likelihood of improper administration of drugs, especially drugs such as opioids, wherein the drugs are modified to increase their lipophilicity and are homogeneously dispersed within a material which is either slowly soluble or not soluble in water.
[0009] It is therefore an object of the present invention to provide a pharmaceutical composition that significantly reduces the potential for improper administration or use of drugs but which, when administered as directed, is capable of delivering a therapeutically effective dose.
BRIEF SUMMARY OF THE INVENTION
[0010] In a first aspect of the present invention, there is provided an orally administrable abuse-deterrent pharmaceutical composition comprising microparticles, wherein the microparticles comprise of a therapeutically effective amount of a pharmaceutically active agent; one or more fatty acids selected from the group consisting of C5 to C30 monovalent fatty acids, C8 to C40 divalent fatty acids and mixtures thereof; and a pharmaceutically acceptable carrier that is a wax substance, wherein the pharmaceutically active agent comprises an organic fatty acid salt of oxycodone; and the one or more fatty acids are present in an amount ranging from two to fifteen times the molar amount of oxycodone.
[0011] An abuse-deterrent pharmaceutical composition has been developed to reduce the likelihood of improper administration of drugs, especially drugs such as opioids. In the preferred embodiment, the drug is modified to increase its lipophilicity by forming a salt between the drug and one or more fatty acids, wherein the concentration of the one or more fatty acids is two to fifteen times the molar amount of the active agent, preferably two to ten times the molar amount of the active agent. In one embodiment the modified drug is homogeneously dispersed within microparticles composed of a material that is either slowly soluble or insoluble in water. In some embodiments the drug containing microparticles or drug particles are coated with one or more coating layers. The abuse-deterrent composition prevents the immediate release of a substantial portion of drug, even if the physical integrity of the formulation is compromised (for example, by chopping with a blade or crushing) and the resulting material is placed in water, snorted, or swallowed. However, when administered as directed, the drug is slowly released from the composition as the composition is broken down or dissolved gradually within the Gl tract by a combination of enzymatic degradation, surfactant action of bile acids, and mechanical erosion.
BRIEF DESCRIPTION OF THE DRAWINGS
[0012]
Figure 1 is an illustration of the testing procedures for determining abuse resistance of the formulations.
Figure 2 is a graph showing the percentage of oxycodone released in Oral Abuse Testing as a function of composition.
DETAILED DESCRIPTION OF THE INVENTION I. Definitions [0013] "Composition" as used herein refers to the drug dosage unit for administration to a patient. It may also be used in reference solely to the active ingredient, or to the formulation containing the active ingredient.
[0014] "Abuse-deterrent composition" or "abuse-deterrent formulation" are used interchangeably herein to refer to compositions that reduce the potential for improper administration of drugs but that deliver a therapeutically effective dose when administered as directed. Improper administration includes tampering with the dosage form and/or administering the drug by any route other than instructed.
[0015] "Drug", "active agent", and "pharmacologically active agent" are used interchangeably herein to refer to a chemical compound that induces a desired pharmacological and/or physiological effect. The terms also encompass pharmaceutically acceptable derivatives of those active agents specifically mentioned herein, including, but not limited to, salts, solvates, hydrates, complexes with one or more molecules, prodrugs, active metabolites, lipophilic derivatives, analogs, and the like.
[0016] "Lipophilic derivative" and "lipophililic drug derivative", as used herein, refer to derivatives of the drug that are less soluble in water than the most soluble salt of the drug. The most soluble salt is selected from either alkaline metal salts (for acidic drugs) or acid addition salts of (for basic drugs).
[0017] "Microparticle" as used herein refers to a composition comprising a drug dispersed within a carrier material. "Coated microparticle" as used herein refers to a composition comprising a drug containing microparticle or a drug particle coated with one or more coating layers. Microparticles and coated microparticles have a size range of 10 to 3000 microns in diameter. II. Compositions [0018] In a first aspect of the present invention, there is provided an orally administrable abuse-deterrent pharmaceutical composition comprising microparticles, wherein the microparticles comprise of a therapeutically effective amount of a pharmaceutically active agent; one or more fatty acids selected from the group consisting of C5 to C30 monovalent fatty acids, C8 to C40 divalent fatty acids and mixtures thereof; and a pharmaceutically acceptable carrier that is a wax substance, wherein the pharmaceutically active agent comprises an organic fatty acid salt of oxycodone; and the one or more fatty acids are present in an amount ranging from two to fifteen times the molar amount of oxycodone.
[0019] The currently available sustained release dosage forms containing narcotic analgesics and other drugs are subject to misuse, in part, because mechanical destruction of the dosage form exposes the encapsulated drug and allows for immediate dissolution of the drug into aqueous media. Two properties of the dosage form that contribute to this outcome are (1) the ease with which drug is exposed to the extraction media and (2) the high water solubility of the drug salt form.
[0020] In the composition disclosed herein, one or both of these properties are altered in order to achieve an abuse-deterrent composition. Specifically, in the preferred embodiment, the drug is modified to increase its lipophilicity and, in additional preferred embodiments, is then homogeneously dispersed within a material that is either slowly soluble or not soluble in water and subsequently formulated into microparticles. The drug may be present in the form of discrete particles or may be partially or fully dispersed in the carrier material on a molecular level.
[0021] The abuse deterrent composition preferably comprises a drug modified to increase its lipophilicity. In other preferred embodiments, the drug is homogenously dispersed within microparticles composed of a material that is either slowly soluble in water or water insoluble. The compositions slow the release of drug if the dosage form is chopped or crushed and the resulting material is placed in water, snorted, or swallowed since most of the drug will remain associated with or entrapped within portions of the core material of the microparticles. In some embodiments the drug containing microparticles or individual drug particles are coated with one or more coating layers, where at least one coating is water insoluble and preferably organic solvent insoluble, but enzymatically degradable. The components of the resulting coated microparticles are not mutually soluble in water, organic solvents, or any combination thereof, such that no one solvent or enzyme solution is capable of dissolving the formulation in its entirety in vitro. It follows that extraction of the drug from the formulation cannot be carried out in one step. However, when administered as directed, the drug is slowly released from the formulation since it is eroded within the environment of the gastrointestinal tract. A. Drugs to be formulated [0022] There are many drugs that it is desirable to deliver using the compositions described herein. The Controlled Substances Act (CSA), Title II of the Comprehensive Drug Abuse Prevention and Control Act of 1970, places all substances that are regulated under existing federal law into one of five schedules based upon the substance's medicinal value, harmfulness, and potential for abuse or addiction. Drugs include those classified as Schedule II, III, IV and V drugs. Particular drugs include those, like oxycodone, that are currently formulated as sustained or controlled release compositions, where drug release is intended to occur over a prolonged period of time through the gastrointestinal tract, and immediate or burst release, for example, by inhalation or injection, is undesirable. As used herein, drugs prone to abuse refer to controlled substance specified as schedule II, II, IV and V drugs.
[0023] The terms "drug", "active agent", and "pharmacologically active agent" are used interchangeably herein to refer to a chemical compound that induces a desired pharmacological, physiological effect. The terms also encompass pharmaceutically acceptable derivatives of those active agents specifically mentioned herein, including, but not limited to, salts, solvates, hydrates, complexes with one or more molecules, prodrugs, active metabolites, lipophilic derivatives, analogs, and the like. When the terms "active agent", "pharmacologically active agent" and "drug" are used, or when a particular drug, such as oxycodone, is identified, it is to be understood as including the active agent per se as well as pharmaceutically acceptable salts, solvates, hydrates, complexes with one or more molecules, prodrugs, active metabolites, and lipophilic derivatives and analogs.
[0024] As described herein, examples of drugs include, 1-phenylcyclohexylamine, 1-piperidinocyclohexanecarbonitrile, alfentanil, alphacetylmethadol, alphaprodine, alprazolam, amobarbital, amphetamine, anileridine, apomorphine, aprobarbital, barbital, barbituric acid derivative, bemidone, benzoylecgonine, benzphetamine, betacetylmethadol, betaprodine, bezitramide, bromazepam, buprenorphine, butabarbital, butalbital, butorphanol, camazepam, cathine, chloral, chlordiazepoxide, clobazam, clonazepam, clorazepate, clotiazepam, cloxazolam, cocaine, codeine, chlorphentermine, delorazepam, dexfenfluramine, dextromoramide, dextropropoxyphen, dezocine, diazepam, diethylpropion, difenoxin, dihydrocodeine, dihydromorphine, dioxaphentyl butyrate, dipanone, diphenoxylate, diprenorphine, ecgonine, enadoline, eptazocine, estazolam, ethoheptazine, ethyl loflazepate, ethylmorphine, etorphine, femproponex, fencamfamin, fenfluramine, fentanyl, fludiazepam, flunitrazepam, flurazepam, glutethimide, halazepam, haloxazolam, hexalgon, hydrocodone, hydromorphone, isomethadone, hydrocodone, ketamine, ketazolam, ketobemidone, levanone, levoalphacetylmethadol, levomethadone, levomethadyl acetate, levomethorphan, levorphanol, lofentanil, loperamide, loprazolam, lorazepam, lormetazepam, lysergic acid, lysergic acid amide, mazindol, medazepam, mefenorex, meperidine, meptazinol, metazocine, methadone, methamphetamine, methohexital, methotrimeprazine, methyldihydromorphinone, methylphenidate, methylphenobarbital, metopon, morphine, nabilone, nalbuphine, nalbupine, nalorphine, narceine, nefopam, nicomorphine, nimetazepam, nitrazepam, nordiazepam, normethadone, normorphine, oxazepam, oxazolam, oxycodone, oxymorphone, pentazocine, pentobarbital, phenadoxone, phenazocine, phencyclidine, phendimetrazine, phenmetrazine, pheneridine, piminodine, prodilidine, properidine, propoxyphene, racemethorphan, racemorphan, racemoramide, remifentanil, secobarbital, sufentanil, talbutal, thebaine, thiamylal, thiopental, tramadol, trimeperidine, and vinbarbital.
[0025] As described herein, in addition to the compounds above, the following scheduled drugs may be incorporated into the composition: allobarbitone, alprazolam, amylobarbitone, aprobarbital, barbital, barbitone, benzphetamine, brallobarbital, bromazepam, brotizolam, buspirone, butalbital, butobarbitone, butorphanol, camazepam, captodiame, carbromal, carfentanil, carpipramine, cathine, chloral, chloral betaine, chloral hydrate, chloralose, chlordiazepoxide, chlorhexadol, chlormethiazole edisylate, chlormezanone, cinolazepam, clobazam, potassium clorazepate, clotiazepam, cloxazolam, cyclobarbitone, delorazepam, dexfenfluramine, diazepam, diethylpropion, difebarbamate, difenoxin, enciprazine, estazolam, ethyl loflazepate, etizolam, febarbamate, fencamfamin, fenfluramine, fenproporex, fluanisone, fludiazepam, flunitraam, flunitrazepam, flurazepam, flutoprazepam, gepirone, glutethimide, halazepam, haloxazolam, hexobarbitone, ibomal, ipsapirone, ketazolam, loprazolam mesylate, lorazepam, lormetazepam, mazindol, mebutamate, medazepam, mefenorex, mephobarbital, meprobamate, metaclazepam, methaqualone, methohexital, methylpentynol, methylphenobarbital, midazolam, milazolam, morphine, nimetazepam, nitrazepam, nordiazepam, oxazepam, oxazolam, paraldehyde, pemoline, pentabarbitone, pentazocine, pentobarbital, phencyclidine, phenobarbital, phendimetrazine, phenmetrazine, phenprobamate, phentermine, phenyacetone, pinazepam, pipradol, prazepam, proxibarbal, quazepam, quinalbaritone, secobarbital, secbutobarbitone, sibutramine, temazepam, tetrazepam, triazolam, triclofos, zalepan, zaleplon, zolazepam, zolpidem, and zopiclone.
[0026] In the present invention, the pharmaceutically active agent is oxycodone.
[0027] Certain compounds described herein may exist in particular geometric or stereoisomeric forms. The compositions disclosed herein contemplate all such compounds, including cis- and trans-isomers, R- and S-enantiomers, diastereomers, (D)-isomers, (L)-isomers, the racemic mixtures thereof, compounds of different spatial conformations, and other mixtures thereof Additional asymmetric carbon atoms may be present in a substituent such as an alkyl group.
[0028] As used herein, "pharmaceutically acceptable salts" refer to derivatives of the disclosed compounds wherein the parent compound is modified by making acid or base salts thereof. Examples of pharmaceutically acceptable salts include, but are not limited to, mineral or organic acid salts of basic residues such as amines; alkali or organic salts of acidic residues such as carboxylic acids; and the like. The pharmaceutically acceptable salts include the conventional non-toxic salts or the quaternary ammonium salts of the parent compound formed, for example, from non-toxic inorganic or organic acids. For example, such conventional non-toxic salts include those derived from inorganic acids such as hydrochloric, hydrobromic, sulfuric, sulfamic, phosphoric, nitric and the like; and the salts prepared from organic acids such as acetic, propionic, succinic, glycolic, stearic, lactic, malic, tartaric, citric, ascorbic, pamoic, maleic, hydroxymaleic, phenylacetic, glutamic, benzoic, salicylic, sulfanilic, 2-acetoxybenzoic, fumaric, tolunesulfonic, methanesulfonic, ethane disulfonic, oxalic, and iseth ionic.
[0029] The pharmaceutically acceptable salts of the compounds can be synthesized from the parent compound, which contains a basic or acidic moiety, by conventional chemical methods. Generally, such salts can be prepared by reacting the free acid or base forms of these compounds with a stoichiometric amount of the appropriate base or acid in water or in an organic solvent, or in a mixture of the two; generally, non-aqueous media like ether, ethyl acetate, ethanol, isopropanol, or acetonitrile are preferred. Lists of suitable salts are found in Remington's Pharmaceutical Sciences, 20th ed., Lippincott Williams & Wilkins, Baltimore, MD, 2000, p. 704, the disclosure of which is hereby incorporated by reference.
[0030] Optionally, the composition described herein can further include a drug having no appreciable abuse potential.
[0031] In preferred embodiments, the solubility characteristics of a drug are altered prior to incorporation into the formulation. Modification of the drug to produce a more lipophilic derivative serves to reduce the water solubility of the drug and thus reduces the aqueous extractability. Furthermore, if the drug is made more lipophilic, it can be solubilized in a fatty substance or wax like mixture, rather than physically dispersed in a particulate form. Solubilization of drug enhances the abuse-deterrent properties of microparticles formulated from the mixture as it is difficult to extract drug from an intimately dispersed composition.
[0032] Some of the methods that can be used to alter the drug's lipophilicity are outlined below. It is understood that two or more approaches can be combined to achieve a desired solubility profile. B. Lipophilic Drug Formulations [0033] As described herein, drugs can be made more lipophilic by eliminating or reducing the overall charge of the drug molecule. For example, for a basic drug, a water soluble salt (such as hydrochloride, sulfate, or maleate) can be converted to a free base using techniques known in the art. Correspondingly, in the case of an acidic drug, a water soluble salt (such sodium, potassium, or the like) can be converted to a free acid.
[0034] In one embodiment, the drug's lipophilicity is increased by forming a salt between a drug molecule and one or more charged lipophilic compounds. In this case the lipophilicity of the resulting salt can be manipulated by varying the lipophilicity of the counter-ion. In the present invention lipophilic (fatty) acids with chain lengths between C5-C30 are suitable lipophilic counter-ion candidates. Suitable (fatty) acids include, but are not limited to, pentanoic acid, hexanoic (caproic) acid, heptanoic acid, octanoic (caprylic) acid, nonanoic acid, decanoic (capric) acid, undecanoic acid, dodecanoic (lauric) acid, tridecanoic acid, tetradecanoic (myristic) acid, pentadecanoic acid, hexadecanoic (palmitic) acid, heptadecanoic (margaric) acid, octadecanoic (stearic) acid, nonadecanoic acid, eicosanoic (arachidic) acid, heneicosanoic acid, docosanoic (behenic) acid, tricosanoic acid, tetracosanoic (lignoceric) acid, pentacosanoic acid, hexacosanoic acid, heptacosanoic acid, octacosanoic acid, nonacosanoic acid, triacontanoic acid, linoleic acid, oleic acid, and mixtures thereof. In a preferred embodiment, the fatty acid is myristic acid or a mixture of stearic and palmitic acid. The fatty acid is present in an amount from about two to about fifteen times the molar amount of the pharmaceutically active agent, preferably two to ten times the molar of amount of the pharmaceutically acceptable agent.
[0035] As described herein, the formation of a salt composed of a pharmaceutically active agent and a fatty acid or amine can be accomplished by a melt process, with or without the use of a solvent. One or more fatty acids or amines are heated above their melting point and the pharmaceutically active agent, in free base or acid form, is added to the molten fatty acid or amine either directly or after dissolution of the active agent in an appropriate solvent, such as methylene chloride. The lipophilic compound is present in excess (on a molar basis) relative to the pharmaceutically active agent. The lipophilic compound is present, preferably, in an amount one to fifteen times the molar amount of the pharmaceutically active agent, more preferably, two to ten times the molar amount of the pharmaceutically active agent. The mass of fatty acid or amine required to dissolve the active agent is a function of the chain length of the fatty acid or amine. For example, oxycodone base can be dissolved in a molten mixture of stearic and plamitic acids at a ratio of 1:5, by weight, or in molten myristic acid at a ratio of 1:4, by weight. The factors determining the amount of fatty acid or amine required to dissolve a given amount of base include but are not limited to base strength, acid strength, steric hindrance of the portions of the acid and/or base molecule involved in salt formation, and the ability of the base to form non-ionic interactions (i.e. hydrogen bonds), with the acid molecules.
[0036] Other salts which may increase lipophilicity and, hence, lipid solubility relative to the parent drug compound include, but are not limited to, pectinate, tannate, phytate, salicylate, saccharinate, acesulfamate, gallate, and terephthalate salts.
[0037] As described herein, a drug may be covalently modified to increase its lipophilicity. For example, a lipophilic compound can be covalently attached to a drug molecule via an ester or amide linkage. Such drug derivatives are cleaved in vivo, thus releasing the parent compound. C. Drug Containing Microparticles [0038] In preferred embodiments, drugs are formulated with a carrier material to form microparticles. As used herein, the term "microparticle" refers to a composition comprising a drug dispersed within a carrier material and "coated microparticle" refers to a composition comprising a drug containing microparticle or a drug particle coated with one or more coating layers of material. Microparticles and coated microparticles have a size range of 10 to 3000 microns in diameter.
[0039] Within microparticles, drug is preferably homogeneously dispersed in the form of fine particles within the carrier material. More preferably, drug is partially solubilized in molten carrier material or partially dissolved with the carrier material in a mutual solvent during the formulation of the microparticles. Most preferably, drug is completely solubilized in the carrier material or completely dissolved with the carrier material in a co-solvent during the formulation of the microparticles. This is accomplished through the selection of materials and the manner in which they are processed.
[0040] Carrier materials appropriate for the fabrication of drug containing microparticles are either slowly soluble in water or insoluble in water, but capable of degrading within the Gl tract by means including enzymatic degradation, surfactant action of bile acids and mechanical erosion. As used herein, the term "slowly soluble in water" refers to materials that are not dissolved in water within a period of 30 minutes. In the present invention, the pharmaceutically acceptable carrier is selected from waxes, wax-like substances and mixtures thereof. As described herein, carrier materials may also include fats, fatty substances and mixtures thereof. Suitable fats and fatty substances include fatty alcohols (such as lauryl, myristyl stearyl, cetyl or cetostearyl alcohol), fatty acids and derivatives, including but not limited to fatty acid esters, fatty acid glycerides (mono-, di-and tri-glycerides), and hydrogenated fats. Specific examples include, but are not limited to castor oil, safflower oil, olive oil, canola oil, sunflower oil, vegetable oil, corn oil, hydrogenated vegetable oil, hydrogenated cottonseed oil, hydrogenated castor oil, hydrogenated oils available under the trade name Sterotex®, stearic acid, cocoa butter, and stearyl alcohol. Oils and hydrogenated oils in admixture with one another may also be used as carrier materials. Suitable waxes and wax-like materials include natural or synthetic waxes, hydrocarbons, and normal waxes. Specific examples of waxes include beeswax, glycowax, castor wax, carnauba wax, paraffins and candelilla wax. As used herein, a wax-like material is defined as any material which is normally solid at room temperature and has a melting point of from about 30 to 300°C. In a preferred embodiment, the carrier is beeswax, carnauba wax or a mixture thereof.
[0041] In some cases, it may be desirable to alter the rate of water penetration into the hydrophobic drug containing microparticles. To this end, rate-controlling (wicking) agents may be formulated along with the fats or waxes listed above. Examples of rate-controlling materials include certain starch derivatives (eg, waxy maltodextrin and drum dried corn starch), cellulose derivatives (eg, hydroxypropylmethylcellulose, hydroxypropylcellulose, methylcellulose, and carboxymethylcellulose), alginic acid, lactose and talc. Additionally, a pharmaceutically acceptable surfactant (for example, lecithin) may be added to facilitate the degradation of such microparticles.
[0042] Proteins which are water insoluble, such as zein, are preferred carrier materials for the formation of drug containing microparticles. Additionally, proteins, polysaccharides and combinations thereof which are water soluble can be formulated with drug into microparticles and subsequently cross-linked to form an insoluble network. For example, cyclodextrins can be complexed with individual drug molecules and subsequently cross-linked.
[0043] Certain polymers may also be used as carrier materials in the formulation of drug containing microparticles. Suitable polymers include ethylcellulose and other natural or synthetic cellulose derivatives. Polymers which are slowly soluble and form a gel in an aqueous environment, such as hydroxypropyl methylcellulose or polyethylene oxide may also be suitable as carrier materials for drug containing microparticles.
[0044] As described herein, encapsulation or incorporation of drug into carrier materials to produce drug containing microparticles can be achieved through known pharmaceutical formulation techniques. To create a composition that protects drug from exposure upon mechanical disruption (eg, grinding, chewing, or chopping), the drug is intimately dispersed within the carrier material. In the case of formulation in fats, waxes or wax-like materials, the carrier material is heated above its melting temperature and the drug is added to form a mixture comprising drug particles suspended in the carrier material, drug dissolved in the carrier material, or a mixture thereof. Microparticles can be subsequently formulated through several methods including, but not limited to, the processes of congealing, extrusion, spray chilling or aqueous dispersion. In a preferred process, wax is heated above its melting temperature, drug is added, and the molten wax-drug mixture is congealed under constant stirring as the mixture cools. Alternatively, the molten wax-drug mixture can be extruded and spheronized to form pellets or beads. For formulations comprising salts composed of a pharmaceutically active agent and one or more fatty acids or amines, the one or more fatty acids or amines are melted and mixed with the free base or acid form of the active agent at a temperature above the melting point(s) of the fatty acid(s) or amine(s) but below the melting point of the active agent. Once a homogeneous mixture is formed, a carrier material such as a fat, fatty substance, wax or wax-like substance can be added to the molten mixture to yield a single phase composition. The molten solution is solidified and formulated into microparticles. Detailed descriptions of these processes can be found in "Remington- The science and practice of pharmacy", 20th Edition, Gennaro et. al., (Lippincott, Williams, and Wilkins, 2000).
[0045] For some carrier materials it may be desirable to use a solvent evaporation technique to produce drug containing microparticles. In this case drug and carrier material are codissolved in a mutual solvent and microparticles can subsequently be produced by several techniques including, but not limited to, forming an emulsion in water or other appropriate media, spray drying or by evaporating off the solvent from the bulk solution and milling the resulting material.
[0046] In addition to modification of the drug itself, processing conditions can be used to influence the dispersion of the drug within water-insoluble or slowly water soluble material. For example, in the case where the water insoluble or slowly soluble material is melted and drug is fully or partially dissolved under stirring conditions, the temperature, agitation rate and time of processing will influence the degree of dissolution achieved. More specifically, a more homogenous dispersion may be achieved with a higher temperature, faster stirring rate and longer processing time. Ultrasound can also be applied to the molten mixture to increase the degree of dispersion and/or the rate of dissolution of the drug.
[0047] As described herein, drug in a particulate form is homogeneously dispersed in a water-insoluble or slowly water soluble material. To minimize the size of the drug particles within the composition, the drug powder itself may be milled to generate fine particles prior to formulation. The process of jet milling, known in the pharmaceutical art, can be used for this purpose. In some embodiments drug in a particulate form is homogeneously dispersed in a wax or wax like substance by heating the wax or wax like substance above its melting point and adding the drug particles while stirring the mixture. In this case a pharmaceutically acceptable surfactant may be added to the mixture to facilitate the dispersion of the drug particles. D. Coated Drug Containing Microparticles [0048] In some embodiments, drug containing microparticles or drug particles are encapsulated within at least one water-insoluble enzymatically degradable material. In some instances the substrates of digestive enzymes are naturally water-insoluble and can be utilized in the formulation without further processing. Solid esters of fatty acids, which are hydrolyzed by lipases, can be spray coated onto microparticles or drug particles. Zein is an example of a naturally water-insoluble protein. It can be coated onto drug containing microparticles or drug particles by spray coating or by wet granulation techniques. In addition to naturally water-insoluble materials, some substrates of digestive enzymes can be treated with cross-linking procedures, resulting in the formation of non-soluble networks. Many methods of cross-linking proteins, initiated by both chemical and physical means, have been reported. One of the most common methods to obtain cross-linking is the use of chemical cross-linking agents. Examples of chemical cross-linking agents include aldehydes (gluteraldehyde and formaldehyde), epoxy compounds, carbodiimides, and genipin. In addition to these cross-linking agents, oxidized and native sugars have been used to cross-link gelatin (Cortesi, R., et al., Biomaterials 19 (1998) 1641-1649). Cross-linking can also be accomplished using enzymatic means; for example, transglutaminase. Finally, cross-linking can be initiated by physical means such as thermal treatment, UV irradiation and gamma irradiation.
[0049] To produce a coating layer of cross-linked protein surrounding drug containing microparticles or drug particles, a water soluble protein can be spray coated onto the microparticles and subsequently cross-linked by the one of the methods described above. Alternatively, drug containing microparticles can be microencapsulated within protein by coacervation-phase separation (for example, by the addition of salts) and subsequently cross-linked. Some suitable proteins for this purpose include gelatin, albumin, casein, and gluten.
[0050] Polysaccharides can also be cross-linked to form a water-insoluble network. For many polysaccharides, this can be accomplished by reaction with calcium salts or multivalent cations which cross-link the main polymer chains. Pectin, alginate, dextran, amylose and guar gum are subject to cross-linking in the presence of multivalent cations. Complexes between oppositely charged polysaccharides can also be formed; pectin and chitosan, for example, can be complexed via electrostatic interactions. Insoluble coatings can be formed on particles in this fashion. It should be noted that in many cases polysaccharides are broken down specifically by enzymes produced by bacteria within the colon.
[0051] In some cases a water-insoluble but enzymatically degradable coating comprising both a protein and a polysaccharide can be produced if the components are oppositely charged polyelectrolytes. Under the proper temperature, pH, and concentrations, the two polymers can interact through their opposite electrical charges and form a water-insoluble complex. If a core particle is present at the time the complex phase separates, it will be coated. For example, gelatin and gum arabic can be coated onto a core particle utilizing this process. Optionally, the complex can be made irreversibly insoluble by subsequent cross-linking induced by chemical or physical means.
[0052] As described herein, it may be desirable to coat the drug containing microparticles with a non-enzymatically degradable coating. Such coatings generally release drug via diffusion through pores in the coating.
[0053] In general, any coating procedure which provides a coating on each particle of drug containing microparticle without significant agglomeration of particles may be used. Coating procedures known in the pharmaceutical art including, but not limited to, fluid bed coating processes, granulation and microencapsulation may be used to obtain appropriate coatings. The coating materials may be any of a large number of natural or synthetic film-formers used singly, in admixture with each other, and in admixture with plasticizers (for example, Durkex 500 vegetable oil), pigments and other substances to alter the characteristics of the coating. In general, the major components of the coating should be insoluble in, and permeable to, water. However, it might be desirable to incorporate a water-soluble substance, such as methyl cellulose, to alter the permeability of the coating. The coating materials may be applied as a suspension in an aqueous fluid or as a solution in organic solvents. The water-permeable diffusion barrier may consist of ethyl cellulose, methyl cellulose and mixtures thereof. The water-permeable diffusion barrier may also consist of water insoluble synthetic polymers sold under the trade name Eudragit® (Rohm Pharma), such as Eudragit RS, Eudragit RL, Eudragit NE and mixtures thereof. Other examples of such coating materials can be found in the Handbook of Pharmaceutical Excipients, Ed. By A. Wade and P.J. Weller, (1994), incorporated by reference herein.
[0054] As used herein, the term water-permeable is used to indicate that the fluids of the alimentary canal will permeate or penetrate the coating film with or without dissolving the film or parts of the film. Depending on the permeability or solubility of the chosen coating (polymer or polymer mixture) a lighter or heavier application thereof is required to obtain the desired release rate. E. Dosage Forms [0055] There are a number of drug compositions that meet the abuse deterrent criteria outlined above. In one embodiment a drug is homogeneously dispersed, in a fine particulate form, within a water-insoluble or slowly water soluble material and the mixture is formulated into microparticles. In another embodiment a drug is partially dissolved within a water-insoluble or slowly water soluble material during the manufacturing process, for example, by mixing at a temperature above the melting point of the carrier material, and the mixture is formulated into microparticles. In yet another embodiment a drug is fully dissolved within a water-insoluble or slowly water soluble material during the manufacturing process, for example, by mixing at a temperature above the melting point of the carrier material, and the mixture is formulated into microparticles. In still a further embodiment, the drug containing microparticles, where the drug is homogeneously dispersed in a particulate form, or has been partially or fully dissolved within the carrier material during the manufacturing process, are coated with one or more coatings to form coated microparticles. In a further embodiment, drug particles are coated directly with one or more coatings to form coated microparticles.
[0056] The microparticles, coated microparticles, or a mixture thereof are formed into a solid dosage form suitable for oral administration. For example, microparticles or coated microparticles can be incorporated into hard capsules, dispersed within a soft gelatin capsule, or combined with appropriate excipients and tableted by compression. The microparticles, coated microparticles, or a mixture thereof could also be further dispersed in a semisolid hydrophobic material, for example, a mixture of castor oil and hydrogenated castor oil.
[0057] As described herein, the compositions can be coated with an enteric coating. Enteric coatings known in the art are applied directly to the abuse-deterrent microparticle or coated microparticle compositions or are applied to the surface of a capsule or tablet comprising the abuse deterrent microparticle and/or coated microparticle compositions. Enteric coatings known in the art include, for example, acrylic polymers that are commercially available under the trade name EUDRAGIT®, cellulose acetate phthalate, hydroxypropylmethylcellulose phthalate, polyvinylacetate phthalate, shellac, hydroxypropylmethylcellulose succinate, cellulose acetate trimelliate or mixtures thereof.
[0058] As described herein, dosage forms can include one or more drugs. When the dosage form includes two or more drugs they can be Scheduled drugs or can be a combination of Scheduled and non-Scheduled drugs. The drugs can be incorporated into separate microparticle compositions where the Scheduled drugs are incorporated into abuse deterrent microparticle compositions and the non-Scheduled drugs are incorporated into abuse deterrent microparticle compostions, sustained release compositions known in the art or immediate release compositions known in the art. The compositions comprising the different drugs are formulated into a single solid dosage form suitable for oral administration, for example, they can be incorporated into a gelatin capsule, or combined with appropriate excipients and compressed into a tablet form. Examples of non-scheduled drugs that may be included in dosage forms described herein include, but are not limited to, aspirin, acetaminophen, nonsteroidal anti-inflammatory drugs, cyclooxygenase II inhibitors, N-methyl-D-aspartate receptor antagonists, glycine receptor antagonists, triptans, dextromethorphan, promethazine, fiorinal, guaifenesin, butalbital, and caffeine.
[0059] An immediate release dose can be incorporated into the formulation in several ways. Immediate release microparticles can be made utilizing standard methodologies and formulated along with abuse-deterrent microparticle and/or coated microparticle compositions in a suitable oral dosage form. Alternatively, a coating containing drug which is available for immediate release can be placed on a tablet comprising abuse-deterrent microparticle and/or coated microparticle compositions plus appropriate excipients. Additionally, an immediate dose of drug can be granulated or blended with rapidly dissolving excipients and subsequently compressed (1) as one layer of bi-layer tablets in which the abuse-deterrent microparticle and/or coated microparticle compositions are compressed as the other layer, or (2) as the outer layer of compression-coated tablets in which the abuse-deterrent microparticle and/or coated microparticle compositions are compressed as the inner core, or (3) into tablets in which abuse-deterrent microparticle and/or coated microparticle compositions are embedded.
[0060] As described herein, the immediate release portion of the dosage form comprises a lipophilic drug derivative. For example, salt derivatives or complexes that are insoluble at a neutral pH but dissociate, thereby releasing the parent compound, at an acidic pH are ideal for immediate release within the stomach. In the case of oxycodone some salts that may exhibit this property include, but are not limited to, the tannate, phthalate, salicylate, gallate, pectinate, phytate, saccharinate, asesulfamate and terephthalate salts. Use of salts in the immediate release portion of the dosage form reduces the abuse potential of the immediate release dose if the formulation is crushed and (1) snorted or (2) dissolved in water since these salts will be poorly soluble under these conditions. It is understood by the one of ordinary skill in the art that such salts may also be used to formulate an immediate release dosage form without a sustained release portion.
[0061] Additional mechanisms to reduce the potential for abuse can also be incorporated during the process of formulating tablets. For example, ingredients can be added to deter chewing or snorting of the final formulation. For example, an intensely bitter substance may deter chewing, while an intensely spicy ingredient, such as capsaicin, may deter snorting. The addition of a colored dye, which would stain the skin and mucosal surface of the nose following snorting may also serve to reduce this practice.
[0062] Optional excipients present in the oral dosage form comprising abuse deterrent microparticles or coated microparticles include, but are not limited to diluents, binders, lubricants, disintigrants, colorants, plasticizers and the like. Diluents, also termed "fillers," are typically necessary to increase the bulk of a solid dosage form so that a practical size is provided for compression of tablets. Examples of diluents include cellulose, dry starch, microcrystalline cellulose, dicalcium phosphate, calcium sulfate, sodium chloride confectioner's sugar, compressible sugar, dextrates, dextrin, dextrose, sucrose, mannitol, powdered cellulose, sorbitol, and lactose. Binders are used to impart cohesive qualities powdered materials and can include materials such as starch, gelatin, sugars, natural and synthetic gums, polyethylene glycol, ethylcellulose, methylcellulose, hydroxypropylmethylcellulose, carboxymethylcellulose, waxes and polyvinyl pyrrolidone. Lubricants are used to facilitate tablet manufacture; examples of lubricants include talc, magnesium stearate, calcium stearate, hydrogenated vegetable oils stearic acid, sodium stearyl fumarate, sodium benzoate, sodium acetate, leucine, sodium oleate, sodium lauryl sulfate, magnesium lauryl sulfate and polyethylene glycol. Disintegrants can be added to pharmaceutical formulations in order to facilitate "breakup" or disintegration after administration. Materials used for this purpose include starches, clays, celluloses, aligns, gums, and cross-linked polymers. A plasticizer may be included in coating materials to alter their mechanical properties. Examples of plasticizers include benzyl benzoate, chlorobutanol, dibutyl sebacate, diethyl phthalate, glycerin, mineral oil, polyethylene glycol, sorbitol, triacetin, triethyl citrate, glycerol, etc. In addition to the additives above, coloring and flavoring agents may also be incorporated into the composition.
[0063] Optionally, the composition disclosed herein comprises materials wherein a combination of the materials is not soluble in water, organic solvent, or any combination thereof.
Examples
Example 1. Preparation and Testing of Abuse-Resistant Compositions [0064] Compositions comprising oxycodone base, a fatty acid and a third wax component were prepared at several different ratios in the following manner. Oxycodone base (0.2g) and Butylated Hydroxytoluene (~1mg) were dissolved in methylene chloride (0.7 ml). The fatty acid(s) and wax(es) were melted together at 95°C on a heating block until clear solutions were obtained. The oxycodone solution was added to the molten fatty acids/waxes and mixed well. The resulting clear solutions were incubated for 20 minutes to remove the solvent. The mixtures were then solidified and re-melted at 95°C as an informal test of stability (i.e. to check for base precipitation). Finally, the molten solutions were poured onto sheets of aluminum foil and rapidly cooled to form solid wafers. Note that only formulations that did not show base precipitation were cast into wafers and subjected to further analysis.
[0065] The wafer compositions described above were crushed into particles. Sample particles were subjected to the Oral Abuse Test (see Figure 1 for protocol). Samples were analyzed with a UV spectrophotometer. Results are presented in Figure 2.
Example 2. Oxycodone with Myristic Acid as a Lipophilic Counter-Ion [0066] Small batches of each microparticle composition were prepared with the following amounts of reagents:
Oxycodone base/Myristic acid/Beeswax (1:5:2)
Oxycodone base/Myristic Acid/Carnauba wax (1:5:2)
1. (1) Myristic acid, Oxycodone base (solid), and BHT were heated to form a homogeneous mixture free of drug crystals. Note that no solvent was used in this stage. 2. (2) Solid wax was added to the clear solution and allowed to dissolve.
The clear mixture was stirred for 5 minutes 3. (3) The clear solution was poured onto a sheet of aluminum foil and allowed to cool rapidly to form solid wafers [0067] The solid wafers produced above were crushed with a mortar and pestle (Oxycodone base/Myristic Acid/Carnauba wax) or cut with a razor blade followed by crushing with a mortar and pestle (Oxycodone base/Myristic Acid/Beeswax). Crushing was carried out with the goal of reducing the particle size to less than 25 mesh. For Oxycodone base/Myristic Acid/Beeswax, crushing was stopped prior to reaching this endpoint due to the difficulty in reducing the particle size of this "gummy" material.
Example 3. Abuse Resistance and Bioavailability Screen [0068] The microparticles comprising oxycodone base/myristic acid/wax (1:5:2 by weight ratio) described above were subjected to a battery of Abuse Tests and a Bioavailability Screen (see Figure 1 for protocols). Samples were analyzed via HPLC. The results are shown in Table 1. Table 1. Testing Results for Particles made from oxycodone/myristic acid/wax at a ratio of 1:5:2
[0069] Differential Scanning Calorimetry was conducted on the samples and on oxycodone base. The results are summarized in Table 2.
Table 2. Summary of DSC analysis on Pre-formulations made from oxycodone/myristic acid/wax at a ratio of 1:5:2.
[0070] No peak was observed at the melting point of oxycodone base, demonstrating that no discrete base particles were present in the compositions.
Example 4. Preparation of Drug Containing Microparticles [0071]
Procedure:
[0072] 1.1. Myristic acid was melted under constant stirring while continuously sparging with nitrogen 2. 2. When Step 1 temperature reaches 70 °C, Oxycodone base was added and mixing is continued until a clear molten liquid was formed. 3. 3. Yellow Beeswax is melted in a separate container. When it reached 70°C, it is added slowly to Step 2 molten liquid and mixed for 5 minutes. 4. 4. Carnauba wax is melted in a separate container. When it reached 90°C, it is added slowly to Step 3 molten liquid and mixed for 5 minutes. A uniform homogeneous mixture was formed.
[0073] The molten mixture was solidified and subsequently was milled in a Fitzmill in the presence of dry ice in order to obtain microparticles less than 16 mesh. It is expected that the molten homogeneous mixture formed in step 4 could be spray congealed as an alternative method to form microparticles with a uniform particle size distribution.
Example 5. Preparation of Coated Drug Containing Microparticles [0074] Drug-containing particles formulated in a manner similar to that described in Example 3 were sieved to obtain particles from 20-40 mesh in size. These particles were coated with an insoluble coating comprising Eudragit RS 30D in a fluidized bed apparatus.
Example 6. Preparation of Tablets for Oral Administration [0075] Drug-containing particles formulated in a manner similar to that described in Example 3 were sieved to obtain particles from 20-40 mesh in size. These particles were tableted with the addition of an appropriate amount of filler, disintegrant and lubricant.
Example 7. Preparation of Capsules for Oral Administration [0076] The drug containing microparticles from Example 3 were loaded into gelatin capsules.
REFERENCES CITED IN THE DESCRIPTION
This list of references cited by the applicant is for the reader's convenience only. It does not form part of the European patent document. Even though great care has been taken in compiling the references, errors or omissions cannot be excluded and the EPO disclaims all liability in this regard.
Patent documents cited in the description • US3980766A [08061 [0006] • US4070494A [06081 [00661 • US6309668B i06081 ίΟΟΟΘΙ • US3773955Af00071 • U.S.3.9.6..6.940A MQS.7.1 • US4457533A [Q007| • U.S.6.277.364B Ifl.Q.Q.7.1 • US6375957BΓ00071 • US6475494Bf00071 • WQ20Q4004693A fOOOSf
Non-patent literature cited in the description • Remington's Pharmaceutical SciencesLippincott Williams & Wilkins20000000704- Γ0029] • GENNARORemington- The science and practice of pharmacyLippincott, Williams, and Wilkins20000000 Γ0044] • CORTESI, R. et al.Biomaterials, 1998, vol. 19, 1641-1649 [00481 • Handbook of Pharmaceutical Excipientsl 9940000 [00531

Claims (20)

1. Oral administrerbar misbrugs-forebyggende farmaceutisk sammensætning omfattende mikropartikler, hvor mikropartiklerne omfatter: (a) en terapeutisk effektiv mængde af et farmaceutisk aktivt middel; (b) én eller flere fedtsyrer valgt fra gruppen bestående af C5 til C30 monovalente fedtsyrer, C8 til C40 divalente fedtsyrer og blandinger deraf; og (c) en farmaceutisk acceptabel bærer som er en vokssubstans, hvor: det farmaceutisk aktive middel (a) omfatter et organisk fedtsyresalt af oxycodon; og den ene eller flere fedtsyrer (b) er til stede i en mængde i området fra to til femten gange molmængden af oxycodon.An orally administrable abuse-preventive pharmaceutical composition comprising microparticles, wherein the microparticles comprise: (a) a therapeutically effective amount of a pharmaceutically active agent; (b) one or more fatty acids selected from the group consisting of C5 to C30 monovalent fatty acids, C8 to C40 divalent fatty acids and mixtures thereof; and (c) a pharmaceutically acceptable carrier which is a wax substance, wherein: the pharmaceutically active agent (a) comprises an oxycodone organic fatty acid salt; and the one or more fatty acids (b) are present in an amount in the range of two to fifteen times the mole amount of oxycodone. 2. Sammensætningen ifølge krav 1, hvor den ene eller flere fedtsyrer er til stede i en mængde fra to til ca. ti gange molmængden af oxycodon.The composition of claim 1, wherein the one or more fatty acids are present in an amount of from two to approx. ten times the mole amount of oxycodone. 3. Sammensætningen ifølge krav 1, hvor de C5 til C30 monovalente fedtsyrer er valgt fra gruppen bestående af pentanoensyre, hexanoen (caproen) syre, heptanoensyre, octanoen (capryl) syre, nonanoensyre, decanoen (caprin) syre, undecanoensyre, dodecanoen (laurin) syre, tridecanoensyre, tetradecanoen (myrisintin) syre, pentadecanoensyre, hexadecanoen (maplitin) syre, heptadecanoen (heptadecan) syre, octadecanoen (stearin) syre, nonadecanoensyre, eicosanoen (arachidin) syre, heneicosanoensyre, docosanoen (behen) syre, tricosanoensyre, tetracosanoen (lignocerin) syre, pentacosanoensyre, hexacosanoensyre, heptacosanoensyre, octacosanoensyre, nonacosanoensyre, triacontanoensyre, linolensyre, oleinsyre, og blandinger deraf.The composition of claim 1, wherein the C5 to C30 monovalent fatty acids are selected from the group consisting of pentanoic acid, hexano (caproene) acid, heptanoic acid, octano (caprylic acid), nonanoic acid, decano (caprin) acid, undecanoic acid, dodecano (laurine). acid, tridecanoic acid, tetradecano (myrisintin) acid, pentadecanoic acid, hexadecano (maplitin) acid, heptadecano (heptadecano) acid, octadecano (stearic) acid, nonadecanoic acid, eicosano (arachidino) acid, lignoceric acid, pentacosanoic acid, hexacosanoic acid, heptacosanoic acid, octacosanoic acid, nonacosanoic acid, triacontanoic acid, linolenic acid, oleic acid, and mixtures thereof. 4. Sammensætningen ifølge krav 3, hvor de C5 til C30 monovalente fedtsyrer er en blanding af palmitin- og stearinsyre.The composition of claim 3, wherein the C5 to C30 monovalent fatty acids are a mixture of palmitic and stearic acid. 5. Sammensætningen ifølge krav 3, hvor de C5 til C30 monovalente fedtsyrer er myristinsyre.The composition of claim 3, wherein the C5 to C30 monovalent fatty acids are myristic acid. 6. Sammensætningen ifølge krav 3, hvor de C5 til C30 monovalente fedtsyrer er stearinsyre.The composition of claim 3, wherein the C5 to C30 monovalent fatty acids are stearic acid. 7. Sammensætningen ifølge krav 1, hvor bæreren (c) er til stede i en mængde fra 0,25 til otte gange vægten af mængden af oxycodon.The composition of claim 1, wherein the carrier (c) is present in an amount from 0.25 to eight times the weight of the amount of oxycodone. 8. Sammensætningen ifølge krav 7, hvor bæreren (c) er til stede i en mængde fra to til seks gange vægten af mængden af oxycodon.The composition of claim 7, wherein the carrier (c) is present in an amount from two to six times the weight of the amount of oxycodone. 9. Sammensætningen ifølge krav 1, hvor voksen er valgt fra gruppen bestående af carnaubavoks, bivoks, mikrokrystallinsk voks og blandinger deraf, eller er glycovoks, castorvoks, en paraffin eller candelillavoks.The composition of claim 1, wherein the wax is selected from the group consisting of carnauba wax, beeswax, microcrystalline wax and mixtures thereof, or is glyco wax, castor wax, a paraffin or candelilla wax. 10. Sammensætningen ifølge krav 9, hvor voksen er bivoks.The composition of claim 9, wherein the wax is beeswax. 11. Sammensætningen ifølge krav 9, hvor voksen er carnaubavoks.The composition of claim 9, wherein the wax is carnauba wax. 12. Sammensætningen ifølge krav 1, hvor det farmaceutiske aktive middel er inkorporeret i en flerhed af individuelle mikropartikler omfattende et materiale der enten er langsomt opløseligt i vand eller vanduopløselig.The composition of claim 1, wherein the pharmaceutically active agent is incorporated in a plurality of individual microparticles comprising a material which is either slowly soluble in water or water insoluble. 13. Sammensætningen ifølge krav 12, hvor mikropartiklerne yderligere omfatter et materiale valgt fra gruppen bestående af naturligt vanduopløselige proteiner, naturligt vanduopløselige polysaccharider, naturligt vanduopløselige lipider og phospholipider, tvær-bundne vandopløselige proteiner, tvær-bundne vandopløselige polysaccharider, tvær-bundne vandopløselige cyclodextriner og kombinationer deraf.The composition of claim 12, wherein the microparticles further comprise a material selected from the group consisting of naturally water insoluble proteins, naturally water insoluble polysaccharides, naturally water insoluble lipids and phospholipids, crosslinked water soluble proteins, crosslinked water soluble polysaccharides, crosslinked water soluble combinations thereof. 14. Sammensætningen ifølge krav 12, hvor de individuelle mikropartikler er coatet med ét eller flere uafhængige lag, hvor mindst ét af lagene er vanduopløseligt.The composition of claim 12, wherein the individual microparticles are coated with one or more independent layers, wherein at least one of the layers is water insoluble. 15. Sammensætningen ifølge krav 14, hvor mindst ét af lagene er alkohol-uopløselig.The composition of claim 14, wherein at least one of the layers is alcohol-insoluble. 16. Sammensætningen ifølge krav 14, hvor sammensætningen ikke er fuldstændig opløselig, og hvor lægemidlet ikke er helt frigivet i en enkelt opløsningsmiddelopløsning.The composition of claim 14, wherein the composition is not completely soluble and wherein the drug is not completely released in a single solvent solution. 17. Sammensætningen ifølge krav 1 tilvejebragt som en tablet eller kapsel.The composition of claim 1 provided as a tablet or capsule. 18. Sammensætningen ifølge krav 5, hvor myristinsyren er til stede i en mængde på mellem 6,9 og 15 gange, eventuelt mellem 6,9 og 10 gange molvægten af oxycodon.The composition of claim 5, wherein the myristic acid is present in an amount of between 6.9 and 15 times, optionally between 6.9 and 10 times the molecular weight of oxycodone. 19. Fremgangsmåde til fremstilling af en farmaceutisk sammensætning ifølge krav 1, hvilken fremgangsmåde omfatter: sammenblande en terapeutisk effektiv mængde oxycodon med én eller flere fedtsyrer og en farmaceutisk acceptabel bærer som er en vokssubstans til at danne en blanding; hvor mængden af den ene eller flere fedtsyrer er fra to til femten gange molvægten af oxycodon; hvor et fedtsyresalt af oxycodon dannes; og hvor fedtsyresaltet af oxycodon dispergeres inde i blandingen.A method of preparing a pharmaceutical composition according to claim 1, comprising: admixing a therapeutically effective amount of oxycodone with one or more fatty acids and a pharmaceutically acceptable carrier which is a wax substance to form a mixture; wherein the amount of one or more fatty acids is from two to fifteen times the molecular weight of oxycodone; where a fatty acid salt of oxycodone is formed; and wherein the fatty acid salt of oxycodone is dispersed within the mixture. 20. Fremgangsmåden ifølge krav 19, hvilken fremgangsmåde omfatter at: sammenblande den terapeutisk effektivt mængde oxycodon med den ene eller flere fedtsyrer til at danne et fedtsyresalt af oxycodon; og dispergere eller solubilisere fedtsyresaltet af oxycodon inde i den farmaceutisk acceptable bærer.The method of claim 19, comprising: mixing the therapeutically effective amount of oxycodone with the one or more fatty acids to form a fatty acid salt of oxycodone; and dispersing or solubilizing the fatty acid salt of oxycodone within the pharmaceutically acceptable carrier.
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US20040253310A1 (en) 2001-09-21 2004-12-16 Gina Fischer Morphine polymer release system
WO2003024429A1 (en) 2001-09-21 2003-03-27 Egalet A/S Polymer release system
US8101209B2 (en) 2001-10-09 2012-01-24 Flamel Technologies Microparticulate oral galenical form for the delayed and controlled release of pharmaceutical active principles
ES2314227T7 (en) 2002-04-09 2012-11-19 Flamel Technologies ORAL PHARMACEUTICAL FORMULATION IN THE FORM OF A WATERPROOF SUSPENSION OF MICROCAPSULES THAT ALLOW THE MODIFIED RELEASE OF AMOXYLYCIN.
ATE419840T1 (en) 2002-04-09 2009-01-15 Flamel Tech Sa ORAL AQUEOUS SUSPENSION CONTAINING MICROCAPSULES FOR THE CONTROLLED RELEASE OF ACTIVE INGREDIENTS
AU2003247876B2 (en) 2002-07-05 2006-10-05 Collegium Pharmaceutical, Inc Abuse-deterrent pharmaceutical compositions of opiods and other drugs
US8557291B2 (en) 2002-07-05 2013-10-15 Collegium Pharmaceutical, Inc. Abuse-deterrent pharmaceutical compositions of opioids and other drugs
US10004729B2 (en) * 2002-07-05 2018-06-26 Collegium Pharmaceutical, Inc. Tamper-resistant pharmaceutical compositions of opioids and other drugs
US8840928B2 (en) * 2002-07-05 2014-09-23 Collegium Pharmaceutical, Inc. Tamper-resistant pharmaceutical compositions of opioids and other drugs
EP1610767B1 (en) 2003-03-26 2011-01-19 Egalet A/S Morphine controlled release system
ES2653568T3 (en) 2004-06-12 2018-02-07 Collegium Pharmaceutical, Inc. Drug formulations for abuse prevention
WO2006133733A1 (en) * 2005-06-13 2006-12-21 Flamel Technologies Oral dosage form comprising an antimisuse system
US8329744B2 (en) * 2005-11-02 2012-12-11 Relmada Therapeutics, Inc. Methods of preventing the serotonin syndrome and compositions for use thereof
WO2007056142A2 (en) * 2005-11-02 2007-05-18 Theraquest Biosciences, Llc Methods of preventing the serotonin syndrome and compositions for use therefor
US9125833B2 (en) * 2005-11-02 2015-09-08 Relmada Therapeutics, Inc. Multimodal abuse resistant and extended release opioid formulations
US20090082466A1 (en) * 2006-01-27 2009-03-26 Najib Babul Abuse Resistant and Extended Release Formulations and Method of Use Thereof
US8652529B2 (en) 2005-11-10 2014-02-18 Flamel Technologies Anti-misuse microparticulate oral pharmaceutical form
FR2898056B1 (en) 2006-03-01 2012-01-20 Ethypharm Sa SQUEEZE-RESISTANT TABLETS TO PREVENT UNLAWFUL MISUSE
CN101678120A (en) * 2006-12-05 2010-03-24 纽罗吉斯克斯公司 Prodrugs and methods of making and using the same
CA2689434C (en) * 2007-06-04 2017-09-26 Shear/Kershman Laboratories, Inc. Tamper resistant lipid-based oral dosage form for opioid agonists
AU2008258596B2 (en) 2007-06-04 2013-02-14 Egalet Ltd Controlled release pharmaceutical compositions for prolonged effect
CN101801350A (en) * 2007-08-13 2010-08-11 阿巴斯迪特宁医药有限公司 Abuse resistant drugs, using method and preparation method
JP2011511782A (en) 2008-02-12 2011-04-14 アボット・ラボラトリーズ Extended release hydrocodone acetaminophen and related methods and uses
GB0818473D0 (en) 2008-10-08 2008-11-12 Probio Nutraceuticals As Composition
WO2010081722A2 (en) * 2009-01-16 2010-07-22 Add Technologies Ltd. Orally disintegrating tablets for the treatment of pain
NZ594207A (en) 2009-02-06 2013-03-28 Egalet Ltd Immediate release composition resistant to abuse by intake of alcohol
NZ603579A (en) 2009-06-24 2014-02-28 Egalet Ltd Controlled release formulations
US10668060B2 (en) 2009-12-10 2020-06-02 Collegium Pharmaceutical, Inc. Tamper-resistant pharmaceutical compositions of opioids and other drugs
GB201006200D0 (en) * 2010-04-14 2010-06-02 Ayanda As Composition
GB201008049D0 (en) 2010-05-13 2010-06-30 Ayanda As Composition
US20120065092A1 (en) * 2010-09-14 2012-03-15 Wai Hobert Fusion analyte cytometric bead assay, and systems and kits for performing the same
CA2827273A1 (en) 2011-02-17 2012-08-23 QRxPharma Ltd. Technology for preventing abuse of solid dosage forms
WO2013028548A2 (en) * 2011-08-19 2013-02-28 The Regents Of The University Of California Compositions and devices for the detection of biomarkers in the gastrointestinal tract and methods for making and using them
WO2013090439A1 (en) * 2011-12-12 2013-06-20 Orbis Biosciences, Inc. Sustained release particle formulations of guaifenesin
TW201330851A (en) * 2012-01-20 2013-08-01 Renascence Therapeutics Ltd Therapeutic compositions for intranasal administration of zolpidem
MX2014015880A (en) 2012-07-06 2015-08-05 Egalet Ltd Abuse deterrent pharmaceutical compositions for controlled release.
EP2976082A4 (en) 2013-03-15 2016-05-11 Inspirion Delivery Technologies Llc Abuse deterrent compositions and methods of use
US9770514B2 (en) 2013-09-03 2017-09-26 ExxPharma Therapeutics LLC Tamper-resistant pharmaceutical dosage forms
CA2910865C (en) 2014-07-15 2016-11-29 Isa Odidi Compositions and methods for reducing overdose
US9132096B1 (en) 2014-09-12 2015-09-15 Alkermes Pharma Ireland Limited Abuse resistant pharmaceutical compositions
US10729685B2 (en) 2014-09-15 2020-08-04 Ohemo Life Sciences Inc. Orally administrable compositions and methods of deterring abuse by intranasal administration
US10078986B2 (en) 2015-09-15 2018-09-18 Sharp Life Science (Eu) Limited Active matrix device and method of driving
US9861629B1 (en) 2015-10-07 2018-01-09 Banner Life Sciences Llc Opioid abuse deterrent dosage forms
US10335405B1 (en) 2016-05-04 2019-07-02 Patheon Softgels, Inc. Non-burst releasing pharmaceutical composition
EP3246000A1 (en) * 2016-05-18 2017-11-22 Capsugel Belgium NV Separable capsule for sprinkling applications
WO2017222575A1 (en) 2016-06-23 2017-12-28 Collegium Pharmaceutical, Inc. Process of making more stable abuse-deterrent oral formulations
CA2972220C (en) 2016-06-29 2023-01-24 Disposerx, Inc. Disposal of medicaments
US10736905B1 (en) 2016-09-09 2020-08-11 Shahin Fatholahi Nefopam dosage forms and methods of treatment
US10335375B2 (en) 2017-05-30 2019-07-02 Patheon Softgels, Inc. Anti-overingestion abuse deterrent compositions
US10736874B1 (en) 2017-09-08 2020-08-11 Shahin Fatholahi Methods for treating pain associated with sickle cell disease
US11446311B2 (en) 2017-09-08 2022-09-20 Shahin Fatholahi Methods for treating pain associated with sickle cell disease
WO2019064026A1 (en) * 2017-09-29 2019-04-04 Orexo Ab New pharmaceutical compositions
EP3704123A1 (en) * 2017-10-30 2020-09-09 Theracaine LLC Hydrophobic acid addition salts and pharmaceutical formulations thereof
GB201904771D0 (en) 2019-04-04 2019-05-22 Orexo Ab New pharmaceutical compositions
GB201904767D0 (en) 2019-04-04 2019-05-22 Orexo Ab New pharmaceutical compositions

Family Cites Families (331)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US297617A (en) * 1884-04-29 Alfeed s
US199530A (en) * 1878-01-22 Improvement in injectors
US142943A (en) * 1873-09-16 Improvement in car-couplings
US1162778A (en) * 1915-04-02 1915-12-07 Home Ironing Board Company Ironing-board.
US1349326A (en) 1920-01-20 1920-08-10 Charles T Davis Poison-tablet
US2404319A (en) 1941-06-28 1946-07-16 Wm S Merrell Co Butanolamine salts of theophylline
US3402240A (en) 1957-06-25 1968-09-17 Pfizer & Co C Medicinal tablet and process of making same
US3065143A (en) 1960-04-19 1962-11-20 Richardson Merrell Inc Sustained release tablet
US3173876A (en) 1960-05-27 1965-03-16 John C Zobrist Cleaning methods and compositions
US3015128A (en) 1960-08-18 1962-01-02 Southwest Res Inst Encapsulating apparatus
NL271831A (en) 1960-11-29
US3146167A (en) 1961-10-05 1964-08-25 Smith Kline French Lab Method of preparing sustained release pellets and products thereof
US3260646A (en) 1962-10-19 1966-07-12 Ferring Ab Medication with mechanism to prevent overdosage
US3172816A (en) 1963-01-28 1965-03-09 Smith Kline French Lab Method of increasing the oil solubility of compounds and products thereof
US3336200A (en) 1963-05-28 1967-08-15 Warner Lambert Pharmaceutical Tablet structure
US3276586A (en) 1963-08-30 1966-10-04 Rosaen Filter Co Indicating means for fluid filters
US4132753A (en) 1965-02-12 1979-01-02 American Cyanamid Company Process for preparing oral sustained release granules
NL6714885A (en) 1967-11-02 1969-05-06
US3541006A (en) 1968-07-03 1970-11-17 Amicon Corp Ultrafiltration process
US3541005A (en) 1969-02-05 1970-11-17 Amicon Corp Continuous ultrafiltration of macromolecular solutions
US3773955A (en) 1970-08-03 1973-11-20 Bristol Myers Co Analgetic compositions
US3879555A (en) 1970-11-16 1975-04-22 Bristol Myers Co Method of treating drug addicts
GB1405088A (en) 1971-06-03 1975-09-03 Mundipharma Ag Slow release formulation
US3965256A (en) 1972-05-16 1976-06-22 Synergistics Slow release pharmaceutical compositions
US3845770A (en) 1972-06-05 1974-11-05 Alza Corp Osmatic dispensing device for releasing beneficial agent
US3980766A (en) 1973-08-13 1976-09-14 West Laboratories, Inc. Orally administered drug composition for therapy in the treatment of narcotic drug addiction
US3916889A (en) 1973-09-28 1975-11-04 Sandoz Ag Patient ventilator apparatus
US3966940A (en) 1973-11-09 1976-06-29 Bristol-Myers Company Analgetic compositions
DE2426812A1 (en) * 1974-06-04 1976-01-02 Klinge Co Chem Pharm Fab PROCESS FOR THE MANUFACTURING OF GRANULES
GB1478759A (en) 1974-11-18 1977-07-06 Alza Corp Process for forming outlet passageways in pills using a laser
JPS51151190A (en) 1975-06-19 1976-12-25 Sugiyama Sangyo Kagaku Kenkyusho Testing paper for measurement of oil and fat peroxide value
DE2530563C2 (en) 1975-07-09 1986-07-24 Bayer Ag, 5090 Leverkusen Analgesic drugs with reduced potential for abuse
US4077407A (en) 1975-11-24 1978-03-07 Alza Corporation Osmotic devices having composite walls
US4063064A (en) 1976-02-23 1977-12-13 Coherent Radiation Apparatus for tracking moving workpiece by a laser beam
US4175119A (en) 1978-01-11 1979-11-20 Porter Garry L Composition and method to prevent accidental and intentional overdosage with psychoactive drugs
US4722941A (en) 1978-06-07 1988-02-02 Kali-Chemie Pharma Gmbh Readily absorbable pharmaceutical compositions of per se poorly absorbable pharmacologically active agents and preparation thereof
NO154582C (en) 1978-10-20 1986-11-05 Ferrosan Ab ANALOGY PROCEDURE FOR THE PREPARATION OF THERAPEUTIC ACTIVE DIPHENYL-DIBUTYLPIPERAZINE CARBOXAMIDS.
US4285987A (en) 1978-10-23 1981-08-25 Alza Corporation Process for manufacturing device with dispersion zone
US4200098A (en) 1978-10-23 1980-04-29 Alza Corporation Osmotic system with distribution zone for dispensing beneficial agent
US4293539A (en) 1979-09-12 1981-10-06 Eli Lilly And Company Controlled release formulations and method of treatment
IE49324B1 (en) 1979-12-19 1985-09-18 Euro Celtique Sa Controlled release compositions
US4457933A (en) 1980-01-24 1984-07-03 Bristol-Myers Company Prevention of analgesic abuse
DE3024416C2 (en) 1980-06-28 1982-04-15 Gödecke AG, 1000 Berlin Process for the production of medicaments with sustained release of active substances
US4424205A (en) 1982-03-18 1984-01-03 The Procter & Gamble Company Hydroxyphenylacetamides having analgesic and anti-irritant activity
US4389393A (en) 1982-03-26 1983-06-21 Forest Laboratories, Inc. Sustained release therapeutic compositions based on high molecular weight hydroxypropylmethylcellulose
US4443428A (en) 1982-06-21 1984-04-17 Euroceltique, S.A. Extended action controlled release compositions
US4459278A (en) 1983-03-07 1984-07-10 Clear Lake Development Group Composition and method of immobilizing emetics and method of treating human beings with emetics
US4612008A (en) 1983-05-11 1986-09-16 Alza Corporation Osmotic device with dual thermodynamic activity
US4765989A (en) 1983-05-11 1988-08-23 Alza Corporation Osmotic device for administering certain drugs
DK149776C (en) 1984-01-06 1987-04-21 Orion Yhtymae Oy ANTIBIOTIC EFFECT OF ERYTHROMYCIN COMPOUND AND PREPARATION CONTAINING THE COMPOUND
US4599342A (en) 1984-01-16 1986-07-08 The Procter & Gamble Company Pharmaceutical products providing enhanced analgesia
US4681897A (en) 1984-01-16 1987-07-21 The Procter & Gamble Company Pharmaceutical products providing enhanced analgesia
GB2162061B (en) 1984-05-03 1988-11-16 Bibhuti B Bardhan Controlled time release therapeutic composition having means for counteracting overdosage
US4675140A (en) 1984-05-18 1987-06-23 Washington University Technology Associates Method for coating particles or liquid droplets
US4629623A (en) 1984-06-11 1986-12-16 Biomatrix, Inc. Hyaluronate-poly (ethylene oxide) compositions and cosmetic formulations thereof
US4588580B2 (en) 1984-07-23 1999-02-16 Alaz Corp Transdermal administration of fentanyl and device therefor
EP0179583A1 (en) 1984-10-04 1986-04-30 Merck & Co. Inc. A system for enhancing the water dissolution rate and solubility of poorly soluble drugs
US4610870A (en) 1984-10-05 1986-09-09 E. R. Squibb & Sons, Inc. Controlled release formulation
GB8430346D0 (en) 1984-11-30 1985-01-09 Reckitt & Colmann Prod Ltd Analgesic compositions
US4569937A (en) 1985-02-11 1986-02-11 E. I. Du Pont De Nemours And Company Analgesic mixture of oxycodone and ibuprofen
US4806341A (en) 1985-02-25 1989-02-21 Rutgers, The State University Of New Jersey Transdermal absorption dosage unit for narcotic analgesics and antagonists and process for administration
US4666705A (en) 1985-06-03 1987-05-19 E. R. Squibb & Sons, Inc. Controlled release formulation
US4764378A (en) 1986-02-10 1988-08-16 Zetachron, Inc. Buccal drug dosage form
ES2058111T3 (en) 1986-06-10 1994-11-01 Euro Celtique Sa COMPOSITION OF CONTROLLED RELEASE OF DIHYDROCODEIN.
US4713243A (en) 1986-06-16 1987-12-15 Johnson & Johnson Products, Inc. Bioadhesive extruded film for intra-oral drug delivery and process
US4769372A (en) 1986-06-18 1988-09-06 The Rockefeller University Method of treating patients suffering from chronic pain or chronic cough
US4785000A (en) 1986-06-18 1988-11-15 The Rockefeller University Method of treating patients suffering from chronic pain or chronic cough
US4970075A (en) 1986-07-18 1990-11-13 Euroceltique, S.A. Controlled release bases for pharmaceuticals
US4861598A (en) 1986-07-18 1989-08-29 Euroceltique, S.A. Controlled release bases for pharmaceuticals
US4737151A (en) 1986-07-25 1988-04-12 Clement John G Syringe injector
US4710384A (en) 1986-07-28 1987-12-01 Avner Rotman Sustained release tablets made from microcapsules
GB8626098D0 (en) 1986-10-31 1986-12-03 Euro Celtique Sa Controlled release hydromorphone composition
JPH0819004B2 (en) 1986-12-26 1996-02-28 日清製粉株式会社 Sustained-release pharmaceutical preparation
GB8727504D0 (en) 1987-11-24 1987-12-23 Glaxo Group Ltd Chemical compositions
DE3812567A1 (en) 1988-04-15 1989-10-26 Basf Ag METHOD FOR PRODUCING PHARMACEUTICAL MIXTURES
US5139790A (en) 1988-10-14 1992-08-18 Zetachron, Inc. Low-melting moldable pharmaceutical excipient and dosage forms prepared therewith
US4939149A (en) 1988-10-24 1990-07-03 The United States Of America As Represented By The Department Of Health And Human Services Resiniferatoxin and analogues thereof to cause sensory afferent C-fiber and thermoregulatory desensitization
US5026556A (en) 1988-11-10 1991-06-25 Norwich Eaton Pharmaceuticals, Inc. Compositions for the transdermal delivery of pharmaceutical actives
IL92343A0 (en) 1988-12-20 1990-07-26 Gist Brocades Nv Granulate for multiparticulate controlled release oral compositions,their preparation and oral pharmaceutical compositions containing them
US5403868A (en) 1988-12-23 1995-04-04 Sandoz Ltd. Capsaicin derivatives
US5330766A (en) 1989-01-06 1994-07-19 F. H. Faulding & Co. Limited Sustained release pharmaceutical composition
US5202128A (en) 1989-01-06 1993-04-13 F. H. Faulding & Co. Limited Sustained release pharmaceutical composition
US5114942A (en) 1989-03-31 1992-05-19 Yale University Treating habit disorders
US5059600A (en) 1989-03-31 1991-10-22 Yale University Treating habit disorders
US4992277A (en) 1989-08-25 1991-02-12 Schering Corporation Immediate release diltiazem formulation
EP0418596A3 (en) 1989-09-21 1991-10-23 American Cyanamid Company Controlled release pharmaceutical compositions from spherical granules in tabletted oral dosage unit form
US5169645A (en) 1989-10-31 1992-12-08 Duquesne University Of The Holy Ghost Directly compressible granules having improved flow properties
US5232685A (en) 1989-11-03 1993-08-03 Schering Aktiengesellschaft Nonionic x-ray contrast medium with high iodine content
DE3937118A1 (en) 1989-11-03 1991-05-08 Schering Ag NON-ionic x-ray contrast agents with high iodine content
GB8926612D0 (en) 1989-11-24 1990-01-17 Erba Farmitalia Pharmaceutical compositions
US5240711A (en) 1989-11-29 1993-08-31 Lts Lohmann Therapie-Systeme Gmbh & Co. Kg Transdermal therapeutic system comprising as active component buprenorphine
IT1237904B (en) 1989-12-14 1993-06-18 Ubaldo Conte CONTROLLED SPEED RELEASE TABS OF ACTIVE SUBSTANCES
CA2062828C (en) 1990-04-24 1996-04-16 Osafumi Hidaka Pharmaceutical plasters
FR2661324B1 (en) 1990-04-25 1994-09-16 Didier Bernardin DISPLAY OF OBJECTS IN A LINE.
US5679650A (en) 1993-11-24 1997-10-21 Fukunaga; Atsuo F. Pharmaceutical compositions including mixtures of an adenosine compound and a catecholamine
US5069909A (en) 1990-06-20 1991-12-03 Cygnus Therapeutic Systems Transdermal administration of buprenorphine
US5246698A (en) 1990-07-09 1993-09-21 Biomatrix, Inc. Biocompatible viscoelastic gel slurries, their preparation and use
US6096722A (en) 1990-08-14 2000-08-01 Isis Pharmaceuticals Inc. Antisense modulation of cell adhesion molecule expression and treatment of cell adhesion molecule-associated diseases
TW225536B (en) 1990-08-23 1994-06-21 Ciba Geigy Ag
US5113585A (en) 1990-09-28 1992-05-19 The Gillette Company Shaving system
US5300302A (en) 1990-10-04 1994-04-05 Nestec S.A. Pharmaceutical composition in gel form in a dispensing package
FR2669336B1 (en) 1990-11-20 1993-01-22 Adir NOVEL OXAZOLO PYRIDINES DERIVATIVES, PROCESSES FOR THEIR PREPARATION AND THE PHARMACEUTICAL COMPOSITIONS CONTAINING THEM.
US5273758A (en) 1991-03-18 1993-12-28 Sandoz Ltd. Directly compressible polyethylene oxide vehicle for preparing therapeutic dosage forms
US5149538A (en) 1991-06-14 1992-09-22 Warner-Lambert Company Misuse-resistive transdermal opioid dosage form
US5215758A (en) 1991-09-11 1993-06-01 Euroceltique, S.A. Controlled release matrix suppository for pharmaceuticals
CA2119377A1 (en) 1991-09-18 1993-04-01 Cassius W. Leys One coat protective system for a surface
US5266331A (en) 1991-11-27 1993-11-30 Euroceltique, S.A. Controlled release oxycodone compositions
US5656295A (en) 1991-11-27 1997-08-12 Euro-Celtique, S.A. Controlled release oxycodone compositions
US5472712A (en) 1991-12-24 1995-12-05 Euroceltique, S.A. Controlled-release formulations coated with aqueous dispersions of ethylcellulose
US5273760A (en) 1991-12-24 1993-12-28 Euroceltigue, S.A. Stabilized controlled release substrate having a coating derived from an aqueous dispersion of hydrophobic polymer
US5286493A (en) 1992-01-27 1994-02-15 Euroceltique, S.A. Stabilized controlled release formulations having acrylic polymer coating
US5478577A (en) 1993-11-23 1995-12-26 Euroceltique, S.A. Method of treating pain by administering 24 hour oral opioid formulations exhibiting rapid rate of initial rise of plasma drug level
US5681585A (en) 1991-12-24 1997-10-28 Euro-Celtique, S.A. Stabilized controlled release substrate having a coating derived from an aqueous dispersion of hydrophobic polymer
US5968551A (en) 1991-12-24 1999-10-19 Purdue Pharma L.P. Orally administrable opioid formulations having extended duration of effect
US5958459A (en) 1991-12-24 1999-09-28 Purdue Pharma L.P. Opioid formulations having extended controlled released
US5580578A (en) 1992-01-27 1996-12-03 Euro-Celtique, S.A. Controlled release formulations coated with aqueous dispersions of acrylic polymers
US5354863A (en) 1992-01-21 1994-10-11 G. D. Searle & Co. Opioid agonist compounds
US5582837A (en) 1992-03-25 1996-12-10 Depomed, Inc. Alkyl-substituted cellulose-based sustained-release oral drug dosage forms
AU658271B2 (en) 1992-03-26 1995-04-06 Tanabe Seiyaku Co., Ltd. Butadiene derivatives and process for preparing the same
NZ254404A (en) 1992-06-22 1997-08-22 Univ California Substituted 1,4-dihydroquinoxaline-2,3-diones and pharmaceutical compositions thereof
SI9200139A (en) 1992-07-08 1994-03-31 Lek Tovarna Farmacevtskih New inclusion complex of clavulanic acid with hydrophylyc and hydropholyc beta-cyclodextrin derivates for production of them
US5232934A (en) 1992-07-17 1993-08-03 Warner-Lambert Co. Method for the treatment of psychomotor stimulant addiction
US5324351A (en) 1992-08-13 1994-06-28 Euroceltique Aqueous dispersions of zein and preparation thereof
WO1994006414A1 (en) 1992-09-18 1994-03-31 Yamanouchi Pharmaceutical Co., Ltd. Sustained-release hydrogel preparation
US5472943A (en) 1992-09-21 1995-12-05 Albert Einstein College Of Medicine Of Yeshiva University, Method of simultaneously enhancing analgesic potency and attenuating dependence liability caused by morphine and other opioid agonists
AU5160893A (en) 1992-10-16 1994-05-09 Nippon Shinyaku Co. Ltd. Method of manufacturing wax matrices
US5604260A (en) 1992-12-11 1997-02-18 Merck Frosst Canada Inc. 5-methanesulfonamido-1-indanones as an inhibitor of cyclooxygenase-2
GB9226392D0 (en) 1992-12-18 1993-02-10 Cpc International Inc Gelling agent
US5321012A (en) 1993-01-28 1994-06-14 Virginia Commonwealth University Medical College Inhibiting the development of tolerance to and/or dependence on a narcotic addictive substance
CA2115792C (en) 1993-03-05 2005-11-01 David J. Mayer Method for the treatment of pain
US5409944A (en) 1993-03-12 1995-04-25 Merck Frosst Canada, Inc. Alkanesulfonamido-1-indanone derivatives as inhibitors of cyclooxygenase
ATE241984T1 (en) 1993-03-26 2003-06-15 Franciscus Wilhelmus He Merkus PHARMACEUTICAL COMPOSITIONS FOR INTRANASAL ADMINISTRATION OF APOMORPHINE
US5656291A (en) 1994-03-16 1997-08-12 Pharmacia & Upjohn Aktiebolag Controlled release preparation
US5436265A (en) 1993-11-12 1995-07-25 Merck Frosst Canada, Inc. 1-aroyl-3-indolyl alkanoic acids and derivatives thereof useful as anti-inflammatory agents
US5474995A (en) 1993-06-24 1995-12-12 Merck Frosst Canada, Inc. Phenyl heterocycles as cox-2 inhibitors
IL110014A (en) 1993-07-01 1999-11-30 Euro Celtique Sa Solid controlled-release oral dosage forms of opioid analgesics
US5879705A (en) 1993-07-27 1999-03-09 Euro-Celtique S.A. Sustained release compositions of morphine and a method of preparing pharmaceutical compositions
US6312704B1 (en) 1993-09-30 2001-11-06 Gattefosse, S.A. Orally administrable composition capable of providing enhanced bioavailability when ingested
EP1442745A1 (en) 1993-10-07 2004-08-04 Euro-Celtique Orally administrable opioid formulations having extended duration of effect
US5891471A (en) 1993-11-23 1999-04-06 Euro-Celtique, S.A. Pharmaceutical multiparticulates
US5500227A (en) 1993-11-23 1996-03-19 Euro-Celtique, S.A. Immediate release tablet cores of insoluble drugs having sustained-release coating
US6210714B1 (en) 1993-11-23 2001-04-03 Euro-Celtique S.A. Immediate release tablet cores of acetaminophen having sustained-release coating
KR100354702B1 (en) 1993-11-23 2002-12-28 유로-셀티크 소시에떼 아노뉨 Manufacturing method and sustained release composition of pharmaceutical composition
AU1677095A (en) 1994-01-11 1995-08-01 Alkermes Controlled Therapeutics, Inc. Oral dosage form of desmopressin (ddavp)
GB9401894D0 (en) 1994-02-01 1994-03-30 Rhone Poulenc Rorer Ltd New compositions of matter
US5843480A (en) 1994-03-14 1998-12-01 Euro-Celtique, S.A. Controlled release diamorphine formulation
DE4413350A1 (en) 1994-04-18 1995-10-19 Basf Ag Retard matrix pellets and process for their production
US5411745A (en) 1994-05-25 1995-05-02 Euro-Celtique, S.A. Powder-layered morphine sulfate formulations
US5460826A (en) 1994-06-27 1995-10-24 Alza Corporation Morphine therapy
US5914131A (en) 1994-07-07 1999-06-22 Alza Corporation Hydromorphone therapy
US5529787A (en) 1994-07-07 1996-06-25 Alza Corporation Hydromorphone therapy
US5616601A (en) 1994-07-28 1997-04-01 Gd Searle & Co 1,2-aryl and heteroaryl substituted imidazolyl compounds for the treatment of inflammation
WO1996005884A1 (en) 1994-08-22 1996-02-29 Iomed, Inc. Iontophoretic delivery device with integral hydrating means
US5635159A (en) 1994-08-26 1997-06-03 Abbott Laboratories Aerosol drug formulations containing polyglycolyzed glycerides
US5521213A (en) 1994-08-29 1996-05-28 Merck Frosst Canada, Inc. Diaryl bicyclic heterocycles as inhibitors of cyclooxygenase-2
US5575993A (en) 1994-08-31 1996-11-19 Buckman Laboratories International, Inc. Ionene polymers containing biologically-active anions
US6491945B1 (en) 1994-09-16 2002-12-10 Alza Corporation Hydrocodone therapy
US5593994A (en) 1994-09-29 1997-01-14 The Dupont Merck Pharmaceutical Company Prostaglandin synthase inhibitors
GB9422154D0 (en) 1994-11-03 1994-12-21 Euro Celtique Sa Pharmaceutical compositions and method of producing the same
US5965161A (en) 1994-11-04 1999-10-12 Euro-Celtique, S.A. Extruded multi-particulates
US5756123A (en) 1994-12-01 1998-05-26 Japan Elanco Co., Ltd. Capsule shell
IL139728A (en) 1995-01-09 2003-06-24 Penwest Pharmaceuticals Compan Aqueous slurry composition containing microcrystalline cellulose for preparing a pharmaceutical excipient
US5545628A (en) 1995-01-10 1996-08-13 Galephar P.R. Inc. Pharmaceutical composition containing fenofibrate
US5552422A (en) 1995-01-11 1996-09-03 Merck Frosst Canada, Inc. Aryl substituted 5,5 fused aromatic nitrogen compounds as anti-inflammatory agents
US5945125A (en) 1995-02-28 1999-08-31 Temple University Controlled release tablet
US5695781A (en) 1995-03-01 1997-12-09 Hallmark Pharmaceuticals, Inc. Sustained release formulation containing three different types of polymers
US6348469B1 (en) 1995-04-14 2002-02-19 Pharma Pass Llc Solid compositions containing glipizide and polyethylene oxide
US5510368A (en) 1995-05-22 1996-04-23 Merck Frosst Canada, Inc. N-benzyl-3-indoleacetic acids as antiinflammatory drugs
US5604253A (en) 1995-05-22 1997-02-18 Merck Frosst Canada, Inc. N-benzylindol-3-yl propanoic acid derivatives as cyclooxygenase inhibitors
US5643992A (en) 1995-06-02 1997-07-01 Minnesota Mining And Manufacturing Company Coating additives for water-based formulations
US5762963A (en) 1995-06-07 1998-06-09 Emory University Method and compositions for controlling oral and pharyngeal pain using capsaicinoids
WO1997008359A1 (en) * 1995-08-23 1997-03-06 Asahi Glass Company Ltd. Target, process for production thereof, and method of forming highly refractive film
US5811126A (en) 1995-10-02 1998-09-22 Euro-Celtique, S.A. Controlled release matrix for pharmaceuticals
AUPN603895A0 (en) 1995-10-19 1995-11-09 University Of Queensland, The Production of analgesic synergy by co-administration of sub-analgesic doses of two strong opioids
US5773031A (en) 1996-02-27 1998-06-30 L. Perrigo Company Acetaminophen sustained-release formulation
DE19607395C2 (en) 1996-02-28 2002-11-21 Lohmann Therapie Syst Lts Salts from a cationic narcotic analgesic with an anionic non-narcotic analgesic, process for their preparation and the pharmaceutical preparations containing these salts
DK0914097T3 (en) 1996-03-12 2002-04-29 Alza Corp Composition and dosage form comprising opioid antagonist
US5766623A (en) 1996-03-25 1998-06-16 State Of Oregon Acting By And Through The Oregon State Board Of Higher Education On Behalf Of Oregon State University Compactable self-sealing drug delivery agents
ATE244019T1 (en) 1996-04-10 2003-07-15 Warner Lambert Co DENAUNATING SUBSTANCES FOR SYMPATHOMIMETIC AMINE SALTS
AU3404997A (en) 1996-05-31 1998-01-05 Euro-Celtique S.A. Sustained release oxycodone formulations with no fed/fast effect
US6440464B1 (en) 1996-06-10 2002-08-27 Viva Life Science Nutritive composition for cardiovascular health containing fish oil, garlic, rutin, capsaicin, selenium, vitamins and juice concentrates
EP2272536B1 (en) 1996-06-26 2016-05-04 Board of Regents, The University of Texas System Hot-melt extrudable Pharmaceutical formulation
EP0914126B1 (en) * 1996-06-27 2003-08-27 Janssen Pharmaceutica N.V. Sustained release sufentanil compositions
BR9710241A (en) 1996-07-11 1999-08-10 Farmarc Nederland Bv Inclusion compromise that contains indole-selective serotonin agonist
US5914129A (en) 1996-07-23 1999-06-22 Mauskop; Alexander Analgesic composition for treatment of migraine headaches
US5869669A (en) 1996-07-26 1999-02-09 Penick Corporation Preparation of 14-hydroxynormorphinones from normorphinone dienol acylates
US20010003588A1 (en) 1996-09-12 2001-06-14 Smithkline Beecham Corporation Controlled release dosage form of [R-(Z)]-alpha-(methoxyimino)-alpha-(1-azabicyclo[2.2.2.]oct-3-yl)acetonitrile monohydrochloride
WO1998010649A1 (en) 1996-09-13 1998-03-19 University Technology Corporation Biocompatible cationic detergents and uses therefor
JP2001503406A (en) 1996-10-28 2001-03-13 ファーマーク、ニーダーランド、ベスローテン、フェンノートシャップ Pharmaceutical composition
US5968547A (en) 1997-02-24 1999-10-19 Euro-Celtique, S.A. Method of providing sustained analgesia with buprenorphine
US5948787A (en) 1997-02-28 1999-09-07 Alza Corporation Compositions containing opiate analgesics
US6120751A (en) 1997-03-21 2000-09-19 Imarx Pharmaceutical Corp. Charged lipids and uses for the same
US6124282A (en) 1997-05-22 2000-09-26 Sellers; Edward M. Drug formulations
CA2291335A1 (en) 1997-05-27 1998-12-03 Algos Pharmaceutical Corporation Analgesic drug composition containing a capsaicinoid and potentiator therefor
US6153621A (en) 1997-06-23 2000-11-28 The University Of Kentucky Research Foundation Combined antagonist compositions
DE69834195T2 (en) 1997-07-02 2007-03-29 Euro-Celtique S.A. STABILIZED TRAMADOL FORMULATIONS WITH DELAYED RELEASE
RS49982B (en) 1997-09-17 2008-09-29 Euro-Celtique S.A., Synergistic analgesic combination of opioid analgesic and cyclooxygenase-2 inhibitor
ATE286721T1 (en) 1997-09-19 2005-01-15 Shire Lab Inc SOLID SOLUTION BEADS
US5891919A (en) 1997-09-19 1999-04-06 Burlington Bio-Medical & Scientific Corp. Denatonium capsaicinate and methods of producing the same
US6294194B1 (en) 1997-10-14 2001-09-25 Boehringer Ingelheim Pharmaceuticals, Inc. Method for extraction and reaction using supercritical fluids
US6066339A (en) 1997-10-17 2000-05-23 Elan Corporation, Plc Oral morphine multiparticulate formulation
AU1534699A (en) 1997-12-05 1999-06-28 Alza Corporation Osmotic dosage form comprising first and second coats
US20030059471A1 (en) 1997-12-15 2003-03-27 Compton Bruce Jon Oral delivery formulation
US6375957B1 (en) 1997-12-22 2002-04-23 Euro-Celtique, S.A. Opioid agonist/opioid antagonist/acetaminophen combinations
EP1041988A4 (en) 1997-12-22 2002-03-13 Euro Celtique Sa A method of preventing abuse of opioid dosage forms
UA55507C2 (en) 1997-12-22 2003-04-15 Еро-Селтік, С.А. Combination of opioid agonist / antagonist
WO1999033490A1 (en) 1997-12-26 1999-07-08 Yamanouchi Pharmaceutical Co., Ltd. Sustained release medicinal compositions
US6251430B1 (en) 1998-02-04 2001-06-26 Guohua Zhang Water insoluble polymer based sustained release formulation
FR2775188B1 (en) 1998-02-23 2001-03-09 Lipha IMMEDIATE RELEASE ORAL EXTENDED RELEASE GALENIC FORM COMPRISING AN ABSORPTION PROMOTING AGENT AND USE OF THE ABSORPTION PROMOTING AGENT
US6245357B1 (en) 1998-03-06 2001-06-12 Alza Corporation Extended release dosage form
US6048736A (en) 1998-04-29 2000-04-11 Kosak; Kenneth M. Cyclodextrin polymers for carrying and releasing drugs
AU4679999A (en) 1998-06-11 1999-12-30 Em Industries, Inc. Micro-osmotic controlled drug delivery systems
GB9814411D0 (en) 1998-07-03 1998-09-02 Mw Encap Limited Capsule sealing system
US6541520B1 (en) 1998-08-05 2003-04-01 Brookhaven Science Associates Treatment of addiction and addiction-related behavior
EP1005863A1 (en) 1998-12-04 2000-06-07 Synthelabo Controlled-release dosage forms comprising a short acting hypnotic or a salt thereof
FR2787715B1 (en) 1998-12-23 2002-05-10 Synthelabo PHARMACEUTICAL COMPOSITION COMPRISING A HYPNOTIC COMPOUND OR ONE OF ITS PHARMACEUTICALLY ACCEPTABLE SALTS
US6294192B1 (en) 1999-02-26 2001-09-25 Lipocine, Inc. Triglyceride-free compositions and methods for improved delivery of hydrophobic therapeutic agents
US6248363B1 (en) 1999-11-23 2001-06-19 Lipocine, Inc. Solid carriers for improved delivery of active ingredients in pharmaceutical compositions
US6267985B1 (en) 1999-06-30 2001-07-31 Lipocine Inc. Clear oil-containing pharmaceutical compositions
DK1163234T3 (en) 1999-03-24 2006-02-27 Scherer Technologies Inc R P Pharmaceutical formulations with improved water solubility
US20030170181A1 (en) 1999-04-06 2003-09-11 Midha Kamal K. Method for preventing abuse of methylphenidate
CA2273808A1 (en) 1999-06-09 2000-12-09 Jaromir Friedrich Method and apparatus for granulating bee wax
US6309663B1 (en) 1999-08-17 2001-10-30 Lipocine Inc. Triglyceride-free compositions and methods for enhanced absorption of hydrophilic therapeutic agents
EP1204406A2 (en) 1999-07-29 2002-05-15 Roxane Laboratories, Inc. Opioid sustained-released formulation
DE19940740A1 (en) 1999-08-31 2001-03-01 Gruenenthal Gmbh Pharmaceutical salts
US6177567B1 (en) 1999-10-15 2001-01-23 Boehringer Ingelheim Chemicals, Inc. Method for preparing oxycodone
CN1407884B (en) 1999-10-29 2012-06-20 欧罗赛铁克股份有限公司 Controlled release hydrocodone formulations
AR031682A1 (en) 1999-11-19 2003-10-01 Reckitt Benckiser Helthcare Uk PHARMACEUTICAL COMPOSITIONS
US20020131988A1 (en) 1999-12-16 2002-09-19 Foster Todd P. Pharmaceutical implant containing immediate-release and sustained-release components and method of administration
US6491949B2 (en) 2000-01-14 2002-12-10 Osmotica Corp. Osmotic device within an osmotic device
US6352721B1 (en) 2000-01-14 2002-03-05 Osmotica Corp. Combined diffusion/osmotic pumping drug delivery system
CA2400567C (en) 2000-02-08 2008-01-15 Euro-Celtique S.A. Tamper-resistant oral opioid agonist formulations
DE60115217T2 (en) 2000-03-28 2006-07-20 Farmarc Nederland B.V. ALPRAZOLAM INCLUSION COMPLEXES AND ITS PHARMACEUTICAL COMPOSITIONS
US6468559B1 (en) 2000-04-28 2002-10-22 Lipocine, Inc. Enteric coated formulation of bishosphonic acid compounds and associated therapeutic methods
US6419954B1 (en) 2000-05-19 2002-07-16 Yamanouchi Pharmaceutical Co., Ltd. Tablets and methods for modified release of hydrophilic and other active agents
JP2004505996A (en) 2000-08-10 2004-02-26 デルシス ファーマシューティカル コーポレイション Improved solid pharmaceutical dosage formulations with hydrophobic drugs
DE60140625D1 (en) 2000-08-15 2010-01-07 Univ Illinois PROCESS FOR PRODUCING MICROPARTICLES
MXPA03003895A (en) 2000-10-30 2003-07-28 Euro Celtique Sa Controlled release hydrocodone formulations.
US6559159B2 (en) 2001-02-01 2003-05-06 Research Triangle Institute Kappa opioid receptor ligands
US20030190360A1 (en) 2001-03-13 2003-10-09 Baichwal Anand R. Chronotherapeutic dosage forms containing glucocorticosteroid and methods of treatment
US6780424B2 (en) 2001-03-30 2004-08-24 Charles David Claude Controlled morphologies in polymer drug for release of drugs from polymer films
US20020187192A1 (en) 2001-04-30 2002-12-12 Yatindra Joshi Pharmaceutical composition which reduces or eliminates drug abuse potential
UA81224C2 (en) 2001-05-02 2007-12-25 Euro Celtic S A Dosage form of oxycodone and use thereof
US20030004177A1 (en) 2001-05-11 2003-01-02 Endo Pharmaceuticals, Inc. Abuse-resistant opioid dosage form
US20030035839A1 (en) 2001-05-15 2003-02-20 Peirce Management, Llc Pharmaceutical composition for both intraoral and oral administration
US20030064122A1 (en) 2001-05-23 2003-04-03 Endo Pharmaceuticals, Inc. Abuse resistant pharmaceutical composition containing capsaicin
US7968119B2 (en) 2001-06-26 2011-06-28 Farrell John J Tamper-proof narcotic delivery system
US20030021841A1 (en) 2001-07-02 2003-01-30 Matharu Amol Singh Pharmaceutical composition
US7276250B2 (en) 2001-07-06 2007-10-02 Penwest Pharmaceuticals Company Sustained release formulations of oxymorphone
US20030044458A1 (en) 2001-08-06 2003-03-06 Curtis Wright Oral dosage form comprising a therapeutic agent and an adverse-effect agent
US7157103B2 (en) 2001-08-06 2007-01-02 Euro-Celtique S.A. Pharmaceutical formulation containing irritant
US7141250B2 (en) * 2001-08-06 2006-11-28 Euro-Celtique S.A. Pharmaceutical formulation containing bittering agent
US7144587B2 (en) 2001-08-06 2006-12-05 Euro-Celtique S.A. Pharmaceutical formulation containing opioid agonist, opioid antagonist and bittering agent
US20030068375A1 (en) 2001-08-06 2003-04-10 Curtis Wright Pharmaceutical formulation containing gelling agent
US7332182B2 (en) 2001-08-06 2008-02-19 Purdue Pharma L.P. Pharmaceutical formulation containing opioid agonist, opioid antagonist and irritant
US20150031718A1 (en) 2001-08-06 2015-01-29 Purdue Pharma L.P. Pharmaceutical Formulation Containing Opioid Agonist, Opioid Antagonist and Gelling Agent
US7842307B2 (en) 2001-08-06 2010-11-30 Purdue Pharma L.P. Pharmaceutical formulation containing opioid agonist, opioid antagonist and gelling agent
WO2003015531A2 (en) 2001-08-06 2003-02-27 Thomas Gruber Pharmaceutical formulation containing dye
US6585997B2 (en) 2001-08-16 2003-07-01 Access Pharmaceuticals, Inc. Mucoadhesive erodible drug delivery device for controlled administration of pharmaceuticals and other active compounds
JP2005506323A (en) 2001-09-05 2005-03-03 ベクトゥラ・リミテッド Functional powder for oral delivery
US20030068276A1 (en) 2001-09-17 2003-04-10 Lyn Hughes Dosage forms
US20030059397A1 (en) 2001-09-17 2003-03-27 Lyn Hughes Dosage forms
US20040253310A1 (en) 2001-09-21 2004-12-16 Gina Fischer Morphine polymer release system
WO2003026743A2 (en) 2001-09-26 2003-04-03 Penwest Pharmaceuticals Company Opioid formulations having reduced potential for abuse
JP2005035888A (en) 2001-10-25 2005-02-10 Ta Stevia Co Ltd Substance for ameliorating anaphylactic type allergic symptom and method for producing the same
CA2464528A1 (en) 2001-11-02 2003-05-15 Elan Corporation, Plc Pharmaceutical composition
US20040126428A1 (en) 2001-11-02 2004-07-01 Lyn Hughes Pharmaceutical formulation including a resinate and an aversive agent
JP2005531495A (en) 2001-12-21 2005-10-20 シャイア ラボラトリーズ,インコーポレイテッド Oral capsule formulation with high physical stability
TW573259B (en) 2001-12-28 2004-01-21 Admtek Inc LIFM algorithm for security association database lookup in IPSec application
US8323692B2 (en) 2002-02-21 2012-12-04 Valeant International Bermuda Controlled release dosage forms
US7670612B2 (en) 2002-04-10 2010-03-02 Innercap Technologies, Inc. Multi-phase, multi-compartment capsular delivery apparatus and methods for using same
JP2005525405A (en) 2002-04-29 2005-08-25 アルザ・コーポレーシヨン Method and dosage form for controlling and supplementing oxycodone
AU2003228654A1 (en) 2002-04-29 2003-11-17 The General Hospital Corporation Compositions and methods for preventing abuse of orally administered medications
US20050106249A1 (en) 2002-04-29 2005-05-19 Stephen Hwang Once-a-day, oral, controlled-release, oxycodone dosage forms
WO2003101431A1 (en) 2002-06-04 2003-12-11 J.B. Chemicals & Pharmaceuticals Ltd. Pharmaceutical composition for controlled drug delivery system
US7776314B2 (en) 2002-06-17 2010-08-17 Grunenthal Gmbh Abuse-proofed dosage system
US7288244B2 (en) * 2002-07-02 2007-10-30 Nv Thermocore Medical Systems Sa Determining vulnerable plaque in blood vessels
US8557291B2 (en) 2002-07-05 2013-10-15 Collegium Pharmaceutical, Inc. Abuse-deterrent pharmaceutical compositions of opioids and other drugs
US8840928B2 (en) 2002-07-05 2014-09-23 Collegium Pharmaceutical, Inc. Tamper-resistant pharmaceutical compositions of opioids and other drugs
US10004729B2 (en) 2002-07-05 2018-06-26 Collegium Pharmaceutical, Inc. Tamper-resistant pharmaceutical compositions of opioids and other drugs
AU2003247876B2 (en) 2002-07-05 2006-10-05 Collegium Pharmaceutical, Inc Abuse-deterrent pharmaceutical compositions of opiods and other drugs
SI1551372T1 (en) 2002-09-20 2018-08-31 Alpharma Pharmaceuticals Llc Sequestering subunit and related compositions and methods
EP1545468A4 (en) 2002-09-20 2007-06-20 Alpharma Inc Sustained-release opioid formulations and methods of use
JP5189242B2 (en) 2002-09-23 2013-04-24 アルケルメス ファーマ アイルランド リミテッド Abuse-resistant pharmaceutical composition
US20040062778A1 (en) 2002-09-26 2004-04-01 Adi Shefer Surface dissolution and/or bulk erosion controlled release compositions and devices
DE10250084A1 (en) 2002-10-25 2004-05-06 Grünenthal GmbH Dosage form protected against abuse
US20050186139A1 (en) 2002-10-25 2005-08-25 Gruenenthal Gmbh Abuse-proofed dosage form
WO2004045551A2 (en) 2002-11-15 2004-06-03 Branded Products For The Future Pharmaceutical composition
EP1572164A2 (en) 2002-12-18 2005-09-14 Pain Therapeutics, Inc. Oral dosage forms with therapeutically active agents in controlled release cores and immediate release gelatin capsule coats
US7524515B2 (en) 2003-01-10 2009-04-28 Mutual Pharmaceuticals, Inc. Pharmaceutical safety dosage forms
EP2316418A3 (en) 2003-02-24 2011-09-21 Pharmaceutical Productions Inc. Transmucosal drug delivery system
EP1610767B1 (en) 2003-03-26 2011-01-19 Egalet A/S Morphine controlled release system
US8168218B2 (en) 2003-04-24 2012-05-01 Jagotec Ag Delayed release tablet with defined core geometry
US8906413B2 (en) 2003-05-12 2014-12-09 Supernus Pharmaceuticals, Inc. Drug formulations having reduced abuse potential
US20040241234A1 (en) 2003-06-02 2004-12-02 Alpharma, Inc. Controlled release press-coated formulations of water-soluble active agents
US20060165790A1 (en) 2003-06-27 2006-07-27 Malcolm Walden Multiparticulates
DE10336400A1 (en) 2003-08-06 2005-03-24 Grünenthal GmbH Anti-abuse dosage form
DE10361596A1 (en) 2003-12-24 2005-09-29 Grünenthal GmbH Process for producing an anti-abuse dosage form
DE102004020220A1 (en) 2004-04-22 2005-11-10 Grünenthal GmbH Process for the preparation of a secured against misuse, solid dosage form
US8075872B2 (en) 2003-08-06 2011-12-13 Gruenenthal Gmbh Abuse-proofed dosage form
US20070048228A1 (en) 2003-08-06 2007-03-01 Elisabeth Arkenau-Maric Abuse-proofed dosage form
DE102004032051A1 (en) 2004-07-01 2006-01-19 Grünenthal GmbH Process for the preparation of a secured against misuse, solid dosage form
WO2005027843A2 (en) 2003-09-19 2005-03-31 Penwest Pharmaceuticals Co. Chronotherapeutic dosage forms
BRPI0414311A (en) 2003-09-19 2008-03-04 Penwest Pharmaceutical Co controlled release dosage forms
CA2540056C (en) 2003-09-26 2015-03-24 Alza Corporation Controlled release formulations of opioid and nonopioid analgesics
US7201920B2 (en) 2003-11-26 2007-04-10 Acura Pharmaceuticals, Inc. Methods and compositions for deterring abuse of opioid containing dosage forms
CA2547597A1 (en) 2003-12-04 2005-06-16 Pfizer Products Inc. Multiparticulate compositions with improved stability
US6984403B2 (en) 2003-12-04 2006-01-10 Pfizer Inc. Azithromycin dosage forms with reduced side effects
US7867511B2 (en) 2004-01-23 2011-01-11 Travanti Pharma Inc. Abuse potential reduction in abusable substance dosage form
US20050181050A1 (en) 2004-01-28 2005-08-18 Collegium Pharmaceutical, Inc. Dosage forms using drug-loaded ion exchange resins
ES2653568T3 (en) 2004-06-12 2018-02-07 Collegium Pharmaceutical, Inc. Drug formulations for abuse prevention
DE102004032049A1 (en) 2004-07-01 2006-01-19 Grünenthal GmbH Anti-abuse, oral dosage form
DE102004032103A1 (en) 2004-07-01 2006-01-19 Grünenthal GmbH Anti-abuse, oral dosage form
US20060018837A1 (en) 2004-07-26 2006-01-26 Victory Pharma, Inc. Pharmaceutical compositions and methods for the prevention of drug misuse
GB2418854B (en) 2004-08-31 2009-12-23 Euro Celtique Sa Multiparticulates
GB0421149D0 (en) 2004-09-23 2004-10-27 Johnson Matthey Plc Preparation of oxycodone
US9801913B2 (en) 2004-09-28 2017-10-31 Atrium Medical Corporation Barrier layer
DE102005005449A1 (en) 2005-02-04 2006-08-10 Grünenthal GmbH Process for producing an anti-abuse dosage form
US7261529B2 (en) 2005-09-07 2007-08-28 Southwest Research Institute Apparatus for preparing biodegradable microparticle formulations containing pharmaceutically active agents
US9023400B2 (en) 2006-05-24 2015-05-05 Flamel Technologies Prolonged-release multimicroparticulate oral pharmaceutical form
AU2007272951A1 (en) 2006-07-11 2008-01-17 Mutual Pharmaceutical Company, Inc. Controlled-release formulations
SA07280459B1 (en) 2006-08-25 2011-07-20 بيورديو فارما إل. بي. Tamper Resistant Oral Pharmaceutical Dosage Forms Comprising an Opioid Analgesic
US20080176955A1 (en) 2007-01-16 2008-07-24 Victory Pharma, Inc. Combined administration of benzonatate and guaifenesin
US20150164835A1 (en) 2007-05-22 2015-06-18 Pisgah Laboratories, Inc. Opioid Salts with Release Properties and Characteristics Useful for Abuse Deterrent Drug Product Formulations
CA2706931C (en) 2007-12-06 2015-05-12 Durect Corporation Oral pharmaceutical dosage forms
WO2010078486A2 (en) 2008-12-31 2010-07-08 Upsher-Smith Laboratories, Inc. Opioid-containing oral pharmaceutical compositions and methods
US10668060B2 (en) 2009-12-10 2020-06-02 Collegium Pharmaceutical, Inc. Tamper-resistant pharmaceutical compositions of opioids and other drugs
RS56344B1 (en) 2010-12-22 2017-12-29 Purdue Pharma Lp Encased tamper resistant controlled release dosage forms
EP2663187B1 (en) 2011-01-11 2016-06-01 Signature Therapeutics, Inc. Compositions comprising enzyme-cleavable oxycodone prodrug
US10420729B2 (en) 2013-03-15 2019-09-24 R.P. Scherer Technologies, Llc Abuse resistant capsule
WO2017222575A1 (en) 2016-06-23 2017-12-28 Collegium Pharmaceutical, Inc. Process of making more stable abuse-deterrent oral formulations

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